1 | \documentclass[twoside,11pt]{article}
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2 |
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3 | % Definition pour Documentation L2
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4 | \usepackage{defdocl2}
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5 |
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6 | % Package standard : Utilisation de caracteres accentues, mode francais et graphique
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7 | % \usepackage[latin1]{inputenc}
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8 | % \usepackage[T1]{fontenc}
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9 | % \usepackage{babel}[english]
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10 | % \usepackage{graphicx}
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11 | % package a mettre pour faire du pdf
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12 | % \usepackage{palatino}
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13 |
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14 |
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15 | % Extension de symboles mathematiques
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16 | % \usepackage{amssymb}
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17 | \usepackage{amsmath}
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18 |
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19 |
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20 | % Definition de taille de page (c'est ds defdocl2.sty)
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21 | \newcommand{\bul}{$\bullet \ $}
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22 | \newcommand{\gph}[1]{ {\bf GPH#1} }
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23 | \newcommand{\ngph}[1]{ GPH#1 }
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24 |
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25 | % Symboles en bold
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26 | \newcommand{\bnu}{ {\boldsymbol{\nu}} }
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27 | \newcommand{\bbold}{\boldsymbol{b} }
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28 | \newcommand{\dbold}{\boldsymbol{d}}
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29 |
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30 | \begin{document}
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31 |
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32 | \begin{titlepage}
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33 | \titleph{
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34 | Planck HFI L2 \\
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35 | Work Breakdown Structure \\
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36 | Package Breakdown Structure
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37 | }
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38 | % Authors list
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39 | \authors{
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40 | R. Ansari & LAL, Orsay \\ % & {\tt ansari@lal.in2p3.fr} \\
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41 | I.J. Grivell & ICSTM, London \\
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42 | G. Le Meur & LAL, Orsay \\
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43 | R.G. Mann & IfA, Edinburgh \\
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44 | M. Rowan-Robinson & ICSTM, London \\
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45 | S. Serjeant & ICSTM \\
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46 | J.F. Sygnet & IAS, Orsay \\ % {\tt Jean-Francois.Sygnet@ias.fr} \\
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47 | }
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48 |
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49 | \titlepfd{PL-HFI-LAL-PW-L2003}{1.2}
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50 |
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51 | \end{titlepage}
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52 |
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53 | % -------- Revision history
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54 | \revisionhistory
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55 | \begin{itemize}
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56 | \item Version 1.0 (February 2000 - CVS version 1.1) \\
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57 | Draft version presented at the HFI consortium meeting
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58 | \item Version 1.1 (April 2000 - CVS version 1.2) \\
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59 | Draft updated using the document prepared at ISCTM and IfA (Edinburgh)
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60 | \item Version 1.2 (August 2000 - CVS version 1.7) \\
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61 | Inclusion of a section describing notation and conventions,
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62 | flow charts. A more detailed description of deliverables is also included.
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63 | \end{itemize}
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64 |
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65 | % -------- Table of content
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66 | \newpage
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67 | \tableofcontents
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68 | \newpage
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69 |
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70 | \section{Introduction}
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71 | This document contains a preliminary version a the
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72 | Work Breakdown Structure (WBS), Package Breakdown Structure
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73 | (PBS) for Planck-HFI Level 2 data processing.
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74 |
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75 | The Level 2 activity of the HFI Data Processing Centre (DPC)
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76 | is divided between the Paris-Orsay-Saclay Data Analysis Centre
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77 | (POSDAC) and the London Planck Analysis Centre (LPAC).
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78 | POSDAC will run the Level 2 data processing pipeline and have overall
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79 | responsibility for the collaborative work involved in its
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80 | design and implementation. LPAC will a play major role for in the
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81 | activities that iterate and overlap between Level 2
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82 | and Level 3 (for which the Cambridge Planck Analysis Centre,
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83 | CPAC, plays the role analogous to POSDAC at Level 2).
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84 | IPAC (at Caltech) and Canada (?) are the two other major
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85 | laboratories involved in the development of HFI level 2
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86 | software.
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87 |
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88 | \section{HFI L2 processing software packages}
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89 | The Level 2 workpackages are listed below, with a numbering
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90 | scheme derived from that in the
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91 | {\it HFI Science Implementation Plan (SIP: draft of 19/11/99) }.
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92 | All packages should be compliant with the general software architecture and use the services of the corresponding support modules (\gph{428}).
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93 |
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94 | \begin{itemize}
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95 | \item[]\gph{421} RTA/QLA : Real Time Assesment, Quick Look Analysis.
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96 | \item[]\gph{422} TOI processing
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97 | \item[]\gph{423} Polarised TOI processing
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98 | \item[]\gph{424} 2-D map reconstruction from TOI's
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99 | \item[]\gph{425} 2-D polarisation map reconstruction from TOI's
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100 | \item[]\gph{426} Optimal 2-D map reconstruction and analysis
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101 | \item[]\gph{427} Early Compact Source Catalogue
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102 | \item[]\gph{428} General software architecture and support modules
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103 | \item[]\gph{429} Integration and Validation
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104 | \end{itemize}
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105 |
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106 | The package \gph{424} should provide a reasonably fast and simple
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107 | method for reconstructing 2-D maps from cleaned TOI's (output of
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108 | \gph{422} and \gph{423}), removing systematic effects (destriping)
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109 | and deconvolving the antenna beam pattern. An iterative method
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110 | is foreseen, capable of dealing with partial knowledge of
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111 | instrument caracteristics. \gph{425} would contain the
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112 | complementary functionalities needed for reconstructing
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113 | polarisation maps, using data from polarised channels.
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114 | The optimal 2-D map reconstruction and analysis package (\gph{426})
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115 | will implement the best feasible method for analysing the whole
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116 | data set from the HFI instrument and building the full sky frequency
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117 | maps.
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118 |
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119 | \par
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120 | In addition to the specific Level 2 workpackages, the following items
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121 | are also related to the L2 data processing:
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122 |
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123 | \begin{itemize}
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124 | \item[]\gph{320} infrastructure procurement and maintenance (POSDAC)
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125 | \item[]\gph{360} infrastructure procurement and maintenance (LPAC)
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126 | \item[]\gph{140} Project management (POSDAC)
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127 | \item[]\gph{180} Project management (LPAC)
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128 | \end{itemize}
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129 |
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130 | The table below shows a very preliminary cost estimate in
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131 | FTE-MY (Full Time Equivalent Man Years) for each package. \\
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132 |
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133 | \begin{table}
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134 | \begin{center}
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135 | \begin{tabular}[h]{|c|c||c|c|}
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136 | \hline
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137 | \makebox[2.5cm][c]{Package} & \makebox[2.5cm][c]{Cost} &
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138 | \makebox[2.5cm][c]{Package} & \makebox[2.5cm][c]{Cost} \\
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139 | \hline
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140 | % & & & \\
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141 | \ngph{421} & 5 & \ngph{426} & ? \\
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142 | %
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143 | \ngph{422} & 15 & \ngph{427} & 10 \\
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144 | %
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145 | \ngph{423} & 5 & \ngph{428} & 30 \\
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146 | %
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147 | \ngph{424} & 20 & \ngph{429} & 10 \\
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148 | %
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149 | \ngph{425} & 10 & & \\
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150 | % & & & \\
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151 | %
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152 | \hline
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153 | \ngph{320} & 3 & \ngph{140} & 4 \\
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154 | \ngph{360} & 2 & \ngph{180} & 1 \\
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155 | \hline \hline
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156 | \multicolumn{2}{c}{\bf Total} & \multicolumn{2}{c}{\bf 115 + ?} \\
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157 | \hline
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158 | \end{tabular}
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159 | \end{center}
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160 | \caption{Preliminary estimate of staff effort
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161 | (in Full Time Equivalent Man-Years FTE-MY)}
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162 | \end{table}
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163 |
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164 | \newpage
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165 |
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166 | \section{HFI data sets and processing steps}
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167 | The major steps for processing Planck-HFI data are briefly described here.
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168 | For the sake of clarity, we define here the notation and conventions used
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169 | throughout this document for referring to the different data components
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170 | in planck HFI. Most of these data components are also defined in
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171 | \cite{datamodel}.
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172 |
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173 | \subsection{Notation and conventions}
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174 | \begin{itemize}
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175 | \item[] {\bf Coordinates:} The spacecraft attitude is defined by the spin
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176 | axis $\overrightarrow{\Omega}$ direction $(\theta, \phi)$ and the
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177 | roll angle $\psi$. The beam direction and orientation can be computed from
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178 | the spacecraft attitude ($\overrightarrow{\Omega}, \psi$) using
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179 | the focal plane geometry.
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180 | The spin velocity is denoted $\omega_z$ or $\omega_{\psi}$. \\
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181 | A given sky direction is denoted $(\alpha,\delta)$ in equatorial coordinates,
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182 | $(l,b)$ in Galactic coordinates or $(\lambda,\beta)$ in ecliptic coordinate.
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183 |
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184 | \item[] {\bf Detector:} A given HFI bolometer read-out channel. The corresponding
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185 | signal is denoted $\dbold(t)$ or $\bbold(t)$ $\dbold^j(t)$ or $\bbold^j(t)$
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186 | where $j$ is the bolometer number.
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187 |
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188 | \item[] {\bf Frequency channel:} The set of detectors working in the
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189 | same frequency range. This information is only obtained by combining
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190 | information from several detectors in the corresponding frequency band.
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191 | The subscript $\bnu$ is used to denote a frequency channel.
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192 |
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193 | \item[] {\bf Scan:} The time interval corresponding to a given nominal
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194 | spin axis direction
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195 |
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196 | \item[] {\bf Sky map:} The reconstructed signal in a given pixelisation
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197 | scheme from a single or a set of detectors. The sky map in a given
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198 | frequency channel is denoted $\boldsymbol{T}^{\bnu}(\theta,\phi)$.
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199 | $\boldsymbol{I}^{\bnu}$,$\boldsymbol{Q}^{\bnu}$,$\boldsymbol{U}^{\bnu}$ are used
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200 | for stokes parameters defining the polarisation state.
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201 | \end{itemize}
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202 |
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203 |
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204 | \subsection{Processing steps}
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205 |
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206 | The level 2 uses input data from three different sources:
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207 | \begin{itemize}
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208 | \item {\bf DS1:} Instrument and spacecraft data obtained
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209 | from level 1.
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210 | \item {\bf DSCal:} HFI calibration data base:
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211 | \begin{itemize}
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212 | \item Spacecraft and focal plane geometry
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213 | \item beam patterns
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214 | \item filters and polariser frequency response
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215 | \item detector and readout electronic characteristics.
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216 | \end{itemize}
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217 | \item {\bf DSExt:} Prior knowlegde of microwave and infrared
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218 | sky and sources:
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219 | \begin{itemize}
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220 | \item Known microwave and infrared source catalogue
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221 | \item Partial sky maps in different HFI frequency bands
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222 | (low resolution and/or incomplete sky coverage)
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223 | \end{itemize}
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224 | \end{itemize}
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225 |
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226 | The main processing steps for HFI-L2 are
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227 | briefly described here:
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228 |
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229 | \begin{itemize}
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230 | \item {\bf L1:} Unpacking the telemetry packets,
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231 | uncompressing the science data, time ordering the data and
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232 | archiving the data in a format usable
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233 | by the L2 pipeline is the responsability of Level 1. Detailed
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234 | description of L1 software and processing steps is beyond the scope
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235 | of this document. {\bf DS0} denotes the complete data set used
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236 | as input by level 1. {\bf DS0} contains the instrument
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237 | science and House-keeping (HSK) data telemetry packets, as well
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238 | as the auxiliary data (orbit and attitude).
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239 | {\bf DS1} is the processed data from level 1 containing the TOI's
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240 | (Time Ordered Information).
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241 | \begin{center}
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242 | \framebox{
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243 | $ \boldmath{L1} : \text{DS0} \longrightarrow \text{DS1} $
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244 | }
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245 | \end{center}
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246 | {\bf DS1} data set contains three main components, with different
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247 | sampling frequency for each component
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248 | \begin{itemize}
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249 | \item Raw Time Ordered bolometer signals : $\bbold_{raw}^j(t_1)$
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250 | \item Time Ordered House-keeping data : $HSK(t_2)$
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251 | \item Associated orbit and attitude data : Space craft
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252 | position $ \boldmath{P}_{xyz}(t_3) $, spin axis direction and
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253 | spin velocity
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254 | $\overrightarrow{\Omega}(t_3) \equiv (\theta, \phi, \omega_z)(t_3)$
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255 | and the roll angle $\psi(t_3)$.
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256 | \end{itemize}
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257 |
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258 | \item {\bf L2-2 , L2-3 :} Cleaning and calibrating the TOI's for
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259 | non polarised (L2-2) and polarised (L2-3) channels.
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260 | These processings correspond to \gph{422} and \gph{423}
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261 | packages.
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262 | \begin{center}
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263 | \framebox{
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264 | $ \boldmath{L2-2} : \text{DS1} \oplus \text{DSCal} \oplus \text{DSExt}
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265 | \longrightarrow \text{DS2-2} $
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266 | \makebox[3cm]{(non polarised)} } \\[2 mm]
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267 | \framebox{
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268 | $ \boldmath{L2-3} : \text{DS1} \oplus \text{DSCal} \oplus \text{DSExt}
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269 | \longrightarrow \text{DS2-3} $
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270 | \makebox[3cm]{(polarised)} }
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271 | \end{center}
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272 | In addition to cleaned and calibrated bolometer signals
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273 | {\bf DS2-2} and {\bf DS2-3} contain data quality flag,
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274 | the parameters necessary to compute the reconstructed spacecraft
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275 | orbit and attitude for each time sample, as well as each
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276 | detector beam pattern direction and orientation.
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277 | \begin{itemize}
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278 | \item Cleaned and calibrated Time Ordered bolometer signals : $\bbold_{c}^j(t_1)$
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279 | \item Data quality flag : $\boldsymbol{qf}_{c}^j(t_1)$
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280 | \item Reconstructed astrometric calibration parameters \\
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281 | The pointing direction and beam orientation
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282 | $(\alpha , \delta)^j(t_1) , \gamma^j(t_1)$
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283 | for each detector at any given time can be computed using these parameters.
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284 | \item Detector response and photometric calibration parameters
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285 | \item Low frequency drifts and noise statistics
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286 | \item Reconstructed lobe
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287 | \item Phase-binned or co-added rings
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288 | \item Time Ordered House-keeping data : $HSK(t_2)$
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289 | \item Orbit and attitude data :
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290 | $\{ \boldmath{P}_{xyz}(t_3) , \overrightarrow{\Omega}(t_3) , \psi(t_3) \} $
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291 | \end{itemize}
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292 |
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293 | \item {\bf L2-4 , L2-5 :} Reconstructing 2-D sky maps using
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294 | cleaned, calibrated TOI's. The redundancies provided by
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295 | the scan strategy the sky and the set of detectors in
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296 | a given frequency channel are used in these steps for assessing
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297 | and removing the systematic and instrumental effects (low frequency drifts,
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298 | noise, main lobe and far side lobe effects, \ldots).
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299 | An iterative, sub-optimal processing method is foreseen for
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300 | L2-4 and L2-5 (\gph{424} and \gph{425}).
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301 | \begin{center}
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302 | \framebox{
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303 | $ \boldmath{L2-2} : \text{DS2-2} \oplus \text{DSCal} \oplus \text{DSExt}
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304 | \longrightarrow \text{DS2-4} \makebox[3cm]{(non polarised)} $
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305 | } \\[2mm]
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306 | \framebox{
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307 | $ \boldmath{L2-5} : \text{DS2-3} \oplus \text{DSCal} \oplus \text{DSExt}
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308 | \longrightarrow \text{DS2-5} \makebox[3cm]{(polarised)} $
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309 | }
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310 | \end{center}
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311 | Reprocessed TOI's and full sky temperature and polarisation state
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312 | maps are the main outputs of {\bf L2-4} and {\bf L2-5}:
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313 | \begin{itemize}
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314 | \item Reprocessed, calibrated Time Ordered bolometer signals :
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315 | $\bbold_{rc}^j(t_1)$
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316 | \item Full sky maps , temperature and polarisation maps (\gph{425})
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317 | $\boldsymbol{I}^\bnu (\alpha,\delta)$, $\boldsymbol{Q}^\bnu (\alpha,\delta)$,
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318 | $\boldsymbol{U}^\bnu (\alpha,\delta)$.
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319 | \end{itemize}
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320 |
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321 | \item {\bf L2-6} More complex methods for 2-D map reconstruction and
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322 | data analysis are performed at the next step ({\bf L2-6} , \gph{426})
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323 | \begin{center}
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324 | \framebox{
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325 | $ \boldmath{L2-6} : \text{DS2-2} \oplus \text{DS2-3} \oplus \text{DSCal}
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326 | \oplus \text{DSExt} \longrightarrow \text{DS2-6} $
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327 | }
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328 | \end{center}
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329 |
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330 | \item {\bf L2-7} The Early Compact Source Catalogue (ECSC) is an
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331 | important data product from HFI Level 2 processing.
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332 | \begin{center}
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333 | \framebox{
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334 | $ \boldmath{L2-7} : \text{DS2-2} \oplus \text{DS2-3} \oplus \text{DSCal}
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335 | \oplus \text{DSExt} \longrightarrow \text{DS2-7} $ \makebox[2cm]{(ECSC)}
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336 | }
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337 | \end{center}
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338 |
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339 | The {\bf DS2-2} and {\bf DS2-3} are used to produce the source catalogue
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340 | containing the source positions, brightness and local
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341 | sky maps in each frequency bands {\bf DS2-7} :
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342 | \begin{itemize}
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343 | \item Source catalogue: $\{ (\alpha,\delta)_i , F_i^{\bnu 1} ,
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344 | F_i^{\bnu 2} , \ldots \}$
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345 | \item local sky maps: $\{ lm_i(x,y)^{\bnu 1}, lm_i(x,y)^{\bnu 2}, \ldots \}$
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346 | \end{itemize}
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347 |
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348 | \end{itemize}
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349 |
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350 | \newpage
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351 |
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352 | \section{GPH421: RTA/QLA Real Time Assesment, Quick Look Analysis}
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353 | \begin{itemize}
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354 | \item[]\gph{421.1} Quick look analysis
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355 | \item[]\gph{421.2} Evaluation of instrument health
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356 | \item[]\gph{421.3} Exchange of information with LFI
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357 | of mission/spacecraft/payload-dependent effects common
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358 | to both instruments
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359 | \end{itemize}
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360 |
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361 |
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362 | \section{GPH422: TOI processing}
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363 |
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364 | This package contains all the processing which has to be
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365 | perfomed on TOI's (Time Ordered Information ) for either a
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366 | single-detector or multpile-detector, single-frequency set
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367 | of TOI's. A very rough sketch of data flow and processing
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368 | steps for GPH422 is given in figure \ref{fig422}.
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369 |
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370 | \begin{figure}[h]
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371 | \mbox{\hspace*{1cm} \includegraphics[width=7cm]{gph422_1.eps}
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372 | \includegraphics[width=7cm]{gph422_2.eps} }
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373 | \caption{Data flow and processing steps for GPH422}
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374 | \label{fig422}
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375 | \end{figure}
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376 |
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377 | \begin{itemize}
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378 |
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379 | \item[]\gph{422.1} TOI statistical characterisation
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380 | \begin{itemize}
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381 | \item[]422.1.1 Raw time-line statistical checks
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382 | \item[]422.1.2 Evaluation of noise components in TOI \\
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383 | (including use of redundancy to produce independent coadds)
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384 | \item[]422.1.3 Low frequency drifts
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385 | \item[]422.1.4 Correlation of TOI with housekeeping data and various
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386 | coordinate systems to look for systematic trends
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387 | \item[]422.1.5 correlation of TOI between channels to identify
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388 | cross-talk
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389 | \end{itemize}
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390 |
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391 | \item[]\gph{422.2} TOI filters
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392 | \begin{itemize}
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393 | \item[]422.2.1 Time domain filtering
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394 | \item[]422.2.2 Fourier filtering
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395 | \end{itemize}
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396 |
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397 | \item[]\gph{422.3} Deglitching and source extraction
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398 | \begin{itemize}
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399 | \item[]422.3.1 production of deglitched TOI, flagged to indicate cosmic
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400 | ray hits etc.
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401 | \item[]422.3.2 Point source detectors
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402 | \item[]422.3.3 Galaxy crossing detector
|
---|
403 | \item[]422.3.4 CMB dipole finder
|
---|
404 | \end{itemize}
|
---|
405 |
|
---|
406 | \item[]\gph{422.4} Astrometric calibration
|
---|
407 | \begin{itemize}
|
---|
408 | \item[]422.4.1 Reconstruction of beam direction and orientaion
|
---|
409 | for each detector using auxiliary spacecraft data
|
---|
410 | \item[]422.4.2 Astrometric calibration using galaxy crossing in TOI
|
---|
411 | \item[]422.4.3 Astrometric calibration using known point sources,
|
---|
412 | and bright sources from the ECSC.
|
---|
413 | \end{itemize}
|
---|
414 |
|
---|
415 | \item[]\gph{422.5} Photometric calibration
|
---|
416 | \begin{itemize}
|
---|
417 | \item[]422.5.1 extended-source photometric calibration using known
|
---|
418 | sources (Galaxy) and COBE/FIRAS data
|
---|
419 | \item[]422.5.2 point-source photometric calibration using known sources
|
---|
420 | \item[]422.5.3 reconstruction of beam pattern seen by each detector
|
---|
421 | from observations of bright
|
---|
422 | \end{itemize}
|
---|
423 |
|
---|
424 | \item[]\gph{422.6} reconstruction of beam pattern seen by each
|
---|
425 | detector from observations of bright point sources \gph{422.3.2}
|
---|
426 | and galaxy crossing \gph{422.3.3}
|
---|
427 |
|
---|
428 | \item[]\gph{422.7} Production of single pointing size reduced TOI's
|
---|
429 | through coadding or phase binning (co-added or phase-binned rings)
|
---|
430 |
|
---|
431 | \item[]\gph{422.9} Deliverables: {\bf DS2-2} Cleaned, calibrated TOI's :
|
---|
432 | \begin{itemize}
|
---|
433 | \item Cleaned and calibrated Time Ordered bolometer signals : $\bbold_{c}^j(t_1)$
|
---|
434 | \item Data quality flag : $\boldsymbol{qf}_{c}^j(t_1)$
|
---|
435 | \item Reconstructed astrometric calibration parameters \\
|
---|
436 | The pointing direction and beam orientation
|
---|
437 | $(\alpha , \delta)^j(t_1) , \gamma^j(t_1)$
|
---|
438 | for each detector at any given time can be computed using these parameters.
|
---|
439 | \item Detector response and photometric calibration parameters
|
---|
440 | \item Low frequency drifts and noise statistics
|
---|
441 | \item Reconstructed lobe
|
---|
442 | \item Phase-binned or co-added rings
|
---|
443 | \item Time Ordered House-keeping data : $HSK(t_2)$
|
---|
444 | \item Orbit and attitude data :
|
---|
445 | $\{ \boldmath{P}_{xyz}(t_3) , \overrightarrow{\Omega}(t_3) , \psi(t_3) \} $
|
---|
446 | \end{itemize}
|
---|
447 |
|
---|
448 | \end{itemize}
|
---|
449 |
|
---|
450 | \section{GPH423: Polarised TOI processing}
|
---|
451 |
|
---|
452 | \gph{423.1} Additional TOI processing or adapted versions of \gph{422}
|
---|
453 | package modules, as required to reconstruct Stokes I,Q,U parameters
|
---|
454 | from detector signals in polarised channels.
|
---|
455 | \begin{itemize}
|
---|
456 | \item[]\gph{423.4} Astrometric calibration
|
---|
457 | \item[]\gph{423.5} Photometric calibration
|
---|
458 | \item[]\gph{422.6} Reconstruction of beam pattern seen by each detector
|
---|
459 | \item[]\gph{423.7} Production of single pointing size reduced TOI's
|
---|
460 | through coadding or phase binning (co-added or phase-binned rings)
|
---|
461 | \item[]\gph{422.9} Deliverables: {\bf DS2-3} Cleaned, calibrated TOI's :
|
---|
462 | Reconstructed stokes parameters $\boldsymbol{I}(t_1)$ ,
|
---|
463 | $\boldsymbol{Q}(t_1)$ , $\boldsymbol{U}(t_1)$ in addition to the
|
---|
464 | already listed {\bf DS2-2} data components.
|
---|
465 | \end{itemize}
|
---|
466 |
|
---|
467 | \section{GPH424: 2-D map reconstruction}
|
---|
468 |
|
---|
469 | This package contains all the necessary modules for
|
---|
470 | single frequency 2-D map reconstruction using the cleaned
|
---|
471 | TOI's from \gph{422} and \gph{423}. It is not intended to implement
|
---|
472 | the optimal 2-D map reconstruction and data analysis method
|
---|
473 | in this package, which is the task of \gph{426}.
|
---|
474 | An iterative processing method is foreseen for estimating
|
---|
475 | and removing the different systematic effects (low frequency
|
---|
476 | drift, noise, main lobe effect and contamination due to side
|
---|
477 | lobes, using redundancies from the scan strategy and the detectors
|
---|
478 | in a given frequency channel, as well as prior knowledge of microwave
|
---|
479 | and infrared sky.
|
---|
480 | A very simplified representaion of data flow and processing
|
---|
481 | steps for GPH424 is given in figure \ref{fig424}.
|
---|
482 | \begin{figure}[h]
|
---|
483 | \mbox{\hspace*{2cm} \includegraphics[height=11cm]{gph424_1.eps} }
|
---|
484 | \caption{Data flow and processing steps for GPH424}
|
---|
485 | \label{fig424}
|
---|
486 | \end{figure}
|
---|
487 |
|
---|
488 |
|
---|
489 | \begin{itemize}
|
---|
490 |
|
---|
491 | \item[]\gph{424.1} Estimation and subtraction of low frequency drifts
|
---|
492 | \begin{itemize}
|
---|
493 | \item[] 424.1.1 Estimation of low frequency drifts using sky scan
|
---|
494 | redundancies (crossings)
|
---|
495 | \item[] 424.1.2 Estimation of low frequency drifts using different
|
---|
496 | detectors in a frequency channel
|
---|
497 | \item[] 424.1.3 Low frequency drift estimation and removal using
|
---|
498 | prior knowledge of microwave and infrared sky (CMB dipole, galaxy, \ldots)
|
---|
499 | \item[] 424.1.4 Iterative low frequency drift estimation and removal
|
---|
500 | using reconstructed sky maps
|
---|
501 | \end{itemize}
|
---|
502 |
|
---|
503 | \item[]\gph{424.2} Side lobe effects
|
---|
504 | \begin{itemize}
|
---|
505 | \item[] 424.2.1 side determination using moon/earth during
|
---|
506 | commissioning phases
|
---|
507 | \item[] 424.2.2 Iterative side determination using reconstructed
|
---|
508 | sky maps
|
---|
509 | \item[] 424.2.3 Side lobe effect subtraction
|
---|
510 | \end{itemize}
|
---|
511 |
|
---|
512 | \item[]\gph{424.3} Main lobe
|
---|
513 | \begin{itemize}
|
---|
514 | \item[]424.3.1 reconstruction of beam pattern from maps using
|
---|
515 | known point and bright ECSC sources.
|
---|
516 | \item[]424.3.2 supplementing source extraction from TOI with
|
---|
517 | use of sources selected from frequency maps
|
---|
518 | \end{itemize}
|
---|
519 |
|
---|
520 | \item[]\gph{424.4} 2-D map reconstruction
|
---|
521 | \begin{itemize}
|
---|
522 | \item[]424.4.1 Local (postage stamp) maps reconstruction
|
---|
523 | \item[]424.4.2 Ring shaped sky strips map reconstruction, using
|
---|
524 | a set of cleaned TOI's from neighbour scans
|
---|
525 | \item[]424.4.3 Full sky map reconstruction by combining the
|
---|
526 | ring shaped sky maps from GPH424.4.2
|
---|
527 | \end{itemize}
|
---|
528 |
|
---|
529 | \item[]\gph{424.5} Astrometric and geometric calibration
|
---|
530 | \begin{itemize}
|
---|
531 | \item[] 424.5.1 Refinement of astrometric calibration using known and
|
---|
532 | bright ECSC sources.
|
---|
533 | \item[] 424.5.2 Reconstruction of focal plane geometry and
|
---|
534 | comparison with calibration data base
|
---|
535 | \item[] 424.5.3 Reconstruction of spacecraft attitude and comparison
|
---|
536 | with corresponding data from {\bf DS1} and {\bf DS2-2}.
|
---|
537 | \end{itemize}
|
---|
538 |
|
---|
539 | \item[]\gph{424.6} Photometric calibration
|
---|
540 |
|
---|
541 | \item[]\gph{424.7} Estimation of systematic effect and noise
|
---|
542 | characteristics on reconstructed maps. One way to achieve this is the
|
---|
543 | reconstruction of frequency maps using subsets of detectors in a
|
---|
544 | frequency channel.
|
---|
545 |
|
---|
546 | \item[]\gph{424.9} Deliverables: {\bf DS2-4} Full sky frequency channel
|
---|
547 | maps and reprocessed TOI's
|
---|
548 | \begin{itemize}
|
---|
549 | \item Full sky maps per frequency channels:
|
---|
550 | $\boldsymbol{I}^\bnu (\alpha,\delta)$
|
---|
551 | \item Beam patterns per detector and per frequency channel
|
---|
552 | \item Noise covariance matrix
|
---|
553 | \item Reprocessed, calibrated Time Ordered bolometer signals :
|
---|
554 | $\bbold_{rc}^j(t_1)$
|
---|
555 | \end{itemize}
|
---|
556 |
|
---|
557 | \end{itemize}
|
---|
558 |
|
---|
559 | \section{GPH425: 2-D polarisation map reconstruction}
|
---|
560 | The modified version of \gph424 software modules, suitable
|
---|
561 | for processing polarised TOI's for producing polarisation
|
---|
562 | sky maps are grouped in this package.
|
---|
563 | The reconstructed sky maps from \gph{424} can be used
|
---|
564 | to assess systematic effects in polarised channel TOI's
|
---|
565 | by combining signal from multiple detectors.
|
---|
566 |
|
---|
567 | \begin{itemize}
|
---|
568 | \item[]\gph{425.1} Estimation and subtraction of low frequency drifts
|
---|
569 | \item[]\gph{425.2} Side lobe effects
|
---|
570 | \item[]\gph{425.3} Main lobe
|
---|
571 | \item[]\gph{425.6} Photometric calibration
|
---|
572 | \item[]\gph{425.8} Reconstruction of stokes (I,Q,U) parameter along the scan
|
---|
573 | \item[]\gph{425.9} Deliverables: {\bf DS2-5} Full sky polarisation maps
|
---|
574 | and reprocessed TOI's
|
---|
575 | \begin{itemize}
|
---|
576 | \item Sky maps per frequency channels: \\
|
---|
577 | $\boldsymbol{I}^\bnu (\alpha,\delta), \boldsymbol{Q}^\bnu (\alpha,\delta),
|
---|
578 | \boldsymbol{U}^\bnu (\alpha,\delta)$
|
---|
579 | \item Beam patterns per detector and per frequency channel
|
---|
580 | \item Noise covariance matrix
|
---|
581 | \item Reprocessed, calibrated Time Ordered bolometer signals :
|
---|
582 | $\bbold_{rc}^j(t_1)$
|
---|
583 | \end{itemize}
|
---|
584 |
|
---|
585 | \end{itemize}
|
---|
586 |
|
---|
587 | \section{GPH426: Optimal 2-D map reconstruction and analysis}
|
---|
588 |
|
---|
589 | Implementation of an optimal 2-D full sky map reconstruction,
|
---|
590 | with systematics (low frequency drifts, side lobes, \ldots)
|
---|
591 | estimation and removal. This package definition and
|
---|
592 | breakdown structure can only be refined at a later stage,
|
---|
593 | after preliminary studies of applicable methods.
|
---|
594 | One such promising method consist of
|
---|
595 | computing the $a_l^m$ coefficients of the
|
---|
596 | spherical harmonic decomposition of the signal, using
|
---|
597 | the Fourier coefficients of 1-D rings reconstructed from
|
---|
598 | cleaned TOI's. The estimation and removal of low frequency
|
---|
599 | drifts and lobe effects can be incorporated in the
|
---|
600 | processing.
|
---|
601 |
|
---|
602 | \begin{itemize}
|
---|
603 | \item[]\gph{426.1} Optimal 2-D map reconstruction and analysis
|
---|
604 | for non polarised channels
|
---|
605 | \item[]\gph{426.2} Optimal 2-D map reconstruction and analysis
|
---|
606 | for polarised channels
|
---|
607 |
|
---|
608 | \item[]\gph{426.9} Deliverables: {\bf DS2-6} Full sky intensity
|
---|
609 | and polarisation maps
|
---|
610 | \begin{itemize}
|
---|
611 | \item Full sky maps for each frequency channels
|
---|
612 | \\ $\boldsymbol{I}^\bnu (\alpha,\delta), \boldsymbol{Q}^\bnu (\alpha,\delta),
|
---|
613 | \boldsymbol{U}^\bnu (\alpha,\delta)$
|
---|
614 | \item Noise and systematic effect maps and characteristics
|
---|
615 | \item Reprocessed, cleanead TOI's for I,Q,U
|
---|
616 | \end{itemize}
|
---|
617 |
|
---|
618 | \end{itemize}
|
---|
619 |
|
---|
620 |
|
---|
621 | \section{GPH427: Early Compact Source Catalogue}
|
---|
622 |
|
---|
623 | \begin{itemize}
|
---|
624 | \item[]\gph{427.1} Source extraction, using the data from \gph{422}
|
---|
625 | and \gph{423}
|
---|
626 | \item[]\gph{427.2} Astrometric calibration
|
---|
627 | \item[]\gph{427.3} Photometric calibration
|
---|
628 | \item[]\gph{427.4} Production of local frequency maps
|
---|
629 | \item[]\gph{427.9} Deliverables: {\bf DS2-7} Early Compact Source Catalogue
|
---|
630 | (ECSC)
|
---|
631 | \begin{itemize}
|
---|
632 | \item Astrometrically calibrated source positions and
|
---|
633 | photometrically calibrated flux in each frequency band: \\
|
---|
634 | $\{ (\alpha,\delta)_i , F_i^{\bnu 1} ,
|
---|
635 | F_i^{\bnu 2} , \ldots \}$
|
---|
636 | \item Local sky maps in each frequency bands for areas
|
---|
637 | around all source positions: \\
|
---|
638 | $\{ lm_i(x,y)^{\bnu 1}, lm_i(x,y)^{\bnu 2}, \ldots \}$
|
---|
639 | \item Related software and documentation
|
---|
640 | \end{itemize}
|
---|
641 |
|
---|
642 | \end{itemize}
|
---|
643 |
|
---|
644 | \section{GPH428: General software architecture and support modules}
|
---|
645 |
|
---|
646 | This package defines the general architecture for the level 2 processing
|
---|
647 | software and insures the compliance with IDIS framework.
|
---|
648 | It provides also the support modules for the different
|
---|
649 | level 2 packages (\gph{42x}) and their interfaces with IDIS
|
---|
650 | components.
|
---|
651 |
|
---|
652 | \begin{itemize}
|
---|
653 |
|
---|
654 | \item[]\gph{428.1} Definition and construction of the software architecture
|
---|
655 |
|
---|
656 | \item[]\gph{428.2} Development and maintenance of TOI manipulation module
|
---|
657 | (including diagnostics and display)
|
---|
658 |
|
---|
659 | \item[]\gph{428.3} Development and maintenance of maps manipulation module
|
---|
660 | (including diagnostics and display of both full and local sky maps)
|
---|
661 |
|
---|
662 | \item[]\gph{428.4} Instrument and satellite representation
|
---|
663 | \begin{itemize}
|
---|
664 | \item[]428.4.1 Focal plane geometry
|
---|
665 | \item[]428.4.2 Detector's frequency response
|
---|
666 | \item[]428.4.3 Main and secondary lobes
|
---|
667 | \item[]428.4.4 Sampling and noise characteristics
|
---|
668 | \item[]428.4.5 Orbit and attitude
|
---|
669 | \item[]428.4.6 Thermal model
|
---|
670 | \end{itemize}
|
---|
671 |
|
---|
672 | \item[]\gph{428.5} Development/supply and maintenence
|
---|
673 | of standard numerical analysis tools
|
---|
674 | \begin{itemize}
|
---|
675 | \item[]428.5.1 Arrays (Matrix, Vectors, \ldots) and linear algebra
|
---|
676 | \item[]428.5.2 Fourier analysis, Wavelet analysis
|
---|
677 | \item[]428.5.3 Minimisation, optimisation
|
---|
678 | \item[]428.5.4 Statistical analysis
|
---|
679 | \end{itemize}
|
---|
680 |
|
---|
681 | \item[]\gph{428.6} Interface with DMC
|
---|
682 |
|
---|
683 | \item[]\gph{428.7} Interface with the process coordinator
|
---|
684 |
|
---|
685 | \end{itemize}
|
---|
686 |
|
---|
687 | \section{GPH429: Integration and Validation}
|
---|
688 |
|
---|
689 | The assembly of the different L2 processing modules and
|
---|
690 | integration in the pipeline, as well as the
|
---|
691 | assessment of the overall quality of the delivered
|
---|
692 | data products is the responsibility of \gph{429}.
|
---|
693 | The data quality validation activity includes iterative
|
---|
694 | work using Level 2 and 3 data products, and comparison of
|
---|
695 | HFI and LFI data for the common 100 GHz channel:
|
---|
696 | for example, activity in this workpackage may influence the details
|
---|
697 | of how the Global polarised 2D map reconstruction of \gph{426}
|
---|
698 | is performed, leading to the changes in the deliverables
|
---|
699 | from that workpackage.
|
---|
700 | \begin{itemize}
|
---|
701 | \item[]\gph{429.1} Pipeline management
|
---|
702 | \begin{itemize}
|
---|
703 | \item[]429.1.1 management and construction of pipeline
|
---|
704 | modules and their interfaces
|
---|
705 | \item[]429.1.2 IDIS and DMC interface
|
---|
706 | \item[]429.1.2 Management of pipeline operations
|
---|
707 | \end{itemize}
|
---|
708 | \item[]\gph{429.2} Iterative study of systematic effects
|
---|
709 | (e.g. map striping, etc) involving both level 2 and level 3 products
|
---|
710 | \item[]\gph{429.3} Combination, comparison and validation
|
---|
711 | of source catalogues derived from Levels 2 and 3 source extraction
|
---|
712 | \item[]\gph{429.4} Comparison of TOI data and maps between
|
---|
713 | HFI and LFI for common 100GHz channel
|
---|
714 | \item[]\gph{429.9} Deliverables: ({\bf DS2}) The complete set of deliverables
|
---|
715 | from each L2 package: \\
|
---|
716 | {\bf DS2} = {\bf DS2-2} $\oplus$ {\bf DS2-3} $\oplus$ {\bf DS2-4}
|
---|
717 | $\oplus$ {\bf DS2-5} $\oplus$ {\bf DS2-6}
|
---|
718 |
|
---|
719 | \begin{itemize}
|
---|
720 | \item Sky maps per frequency channels for each component (I,Q,U) : \\
|
---|
721 | $\boldsymbol{I}^\bnu (\alpha,\delta), \boldsymbol{Q}^\bnu (\alpha,\delta),
|
---|
722 | \boldsymbol{U}^\bnu (\alpha,\delta)$
|
---|
723 | \item Reprocessed, cleanead TOI's for I,Q,U
|
---|
724 | \item Noise and systematic effect maps and characteristics
|
---|
725 | \item Photometric and Astrometric calibration
|
---|
726 | \item Beam patterns for each detector and for each frequency channel
|
---|
727 | \item Associated software and documentation
|
---|
728 | \end{itemize}
|
---|
729 |
|
---|
730 | \end{itemize}
|
---|
731 |
|
---|
732 | \begin{thebibliography}{10}
|
---|
733 | \bibitem{datamodel}
|
---|
734 | \newblock {\bf PL-COM-OAT-TN-003}
|
---|
735 | \newblock {Planck IDIS Data Model Description Document}
|
---|
736 | \end{thebibliography}
|
---|
737 |
|
---|
738 |
|
---|
739 | \end{document}
|
---|