[845] | 1 | \documentclass[twoside,11pt]{article}
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[811] | 2 | % Package standard : Utilisation de caracteres accentues, mode francais et graphique
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| 3 | \usepackage[latin1]{inputenc}
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| 4 | \usepackage[T1]{fontenc}
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[845] | 5 | \usepackage{babel}
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[811] | 6 | \usepackage{graphicx}
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[845] | 7 | % package a mettre pour faire du pdf
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| 8 | \usepackage{palatino}
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[811] | 9 |
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| 10 | % Extension de symboles mathematiques
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| 11 | \usepackage{amssymb}
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| 12 |
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| 13 | % Definition de taille de page
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| 14 | \setlength{\textwidth}{16cm}
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| 15 | \setlength{\textheight}{21.5cm}
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| 16 | \setlength{\topmargin}{0.5cm}
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| 17 | \setlength{\oddsidemargin}{0.cm}
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| 18 | \setlength{\evensidemargin}{0.cm}
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| 19 | \setlength{\unitlength}{1mm}
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| 20 |
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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 | \begin{document}
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| 26 |
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| 27 | \begin{titlepage}
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| 28 | \vspace{1cm}
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[845] | 29 | \makebox[30mm][c]{\includegraphics[width=3cm]{hfi_icon_vsmall.eps}}
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| 30 | \raisebox{12mm}{\rule{80 mm}{0.5 mm}\makebox[50 mm]{\bf Planck HFI L2}}
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[811] | 31 | \vspace{2cm}
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| 32 | \begin{center}
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| 33 | \par \renewcommand{\baselinestretch}{2.0} \small
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| 34 | {\LARGE \bf
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| 35 | Planck HFI L2 \\
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[845] | 36 | Work Breakdown Structure \\
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| 37 | Package Breakdown Structure
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[811] | 38 | }
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[845] | 39 |
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[811] | 40 | \par \renewcommand{\baselinestretch}{1.0} \normalsize
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[845] | 41 | \vspace{2 cm}
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[811] | 42 | \begin{tabular}{ll}
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[845] | 43 | R. Ansari & LAL \\ % & {\tt ansari@lal.in2p3.fr} \\
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| 44 | I.J. Grivell & ICSTM \\
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| 45 | R.G. Mann & IfA, Edinburgh \\
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| 46 | C. Mercier & IAS \\ % & {\tt Claude.Mercier@ias.fr} \\
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| 47 | M. Rowan-Robinson & ICSTM \\
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| 48 | S. Serjeant & ICSTM \\
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| 49 | J.F. Sygnet & IAS \\ % {\tt Jean-Francois.Sygnet@ias.fr} \\
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| 50 |
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[811] | 51 | % {É. Aubourg} & {\tt aubourg@hep.saclay.cea.fr} \\
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| 52 | % {É. Lesquoy} & {\tt lesquoy@hep.saclay.cea.fr} \\
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| 53 | % {C. Magneville} & {\tt cmv@hep.saclay.cea.fr} \\
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| 54 | \end{tabular}
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| 55 |
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| 56 | \end{center}
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| 57 | \vfill
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| 58 | \hfill
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| 59 | \framebox[\textwidth]{\hspace{0.5cm} \bf Planck HFI Level 2
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[845] | 60 | \hspace{1cm} \today } \\
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[811] | 61 | \end{titlepage}
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| 62 |
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[845] | 63 | \vspace*{1cm}
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| 64 | \begin{center}
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| 65 | \mbox{
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| 66 | \rule{50 mm}{0.6 mm} \makebox[60 mm]{\bf Revision history} \rule{50 mm}{0.6 mm} }
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| 67 | \end{center}
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| 68 | \vspace{2 mm}
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| 69 | \begin{itemize}
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| 70 | \item Version 1.0 (February 2000 - CVS version 1.1) \\
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| 71 | Draft version presented at the HFI consortium meeting
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| 72 | \item Version 1.1 (April 2000 - CVS version 1.2) \\
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| 73 | Draft updated using the document prepared at ISCTM and IfA (Edinburgh)
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| 74 | \end{itemize}
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| 75 |
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| 76 | \newpage
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| 77 |
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[811] | 78 | \tableofcontents
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| 79 |
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| 80 | \newpage
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| 81 | % \tableofcontents
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| 82 |
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[845] | 83 | \section{Introduction}
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[811] | 84 | This document contains a preliminary version a the
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| 85 | Work Breakdown Structure (WBS), Package Breakdown Structure
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| 86 | (PBS) for Planck-HFI Level 2 data processing.
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| 87 |
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[845] | 88 | The Level 2 activity of the HFI Data Processing Centre (DPC)
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| 89 | is divided between the Paris-Orsay-Saclay Data Analysis Centre
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| 90 | (POSDAC) and the London Planck Analysis Centre (LPAC).
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| 91 | POSDAC will run the Level 2 data processing pipeline and have overall
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| 92 | responsibility for the collaborative work involved in its
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| 93 | design and implementation. LPAC will a major role for in the
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| 94 | activities that iterate and overlap between Level 2
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| 95 | and Level 3 (for which the Cambridge Planck Analysis Centre,
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| 96 | CPAC, plays the role analogous to POSDAC at Level 2)
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[811] | 97 |
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[845] | 98 | \section{HFI L2 processing software packages}
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| 99 | The Level 2 workpackages are listed below, with a numbering
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| 100 | scheme derived from that in the
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| 101 | {\it HFI Science Implementation Plan (SIP: draft of 19/11/99) }.
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| 102 | 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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| 103 |
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[811] | 104 | \begin{itemize}
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| 105 | \item[]\gph{421} RTA/QLA : Real Time Assesment, Quick Look Analysis.
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| 106 | \item[]\gph{422} TOI processing
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| 107 | \item[]\gph{423} Polarised TOI processing
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| 108 | \item[]\gph{424} Simple 2-D map reconstruction from TOI's
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| 109 | \item[]\gph{425} Global 2-D map reconstruction
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| 110 | \item[]\gph{426} Global 2-D polarised map reconstruction
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| 111 | \item[]\gph{427} Early Compact Source Catalogue
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| 112 | \item[]\gph{428} General software architecture and support modules
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| 113 | \item[]\gph{429} Integration and Validation
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| 114 | \end{itemize}
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| 115 |
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[845] | 116 | In addition to the specific Level 2 workpackages, the following are
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| 117 | also related to Level 2 data processing:
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| 118 |
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[811] | 119 | \begin{itemize}
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[845] | 120 | \item[]\gph{320} infrastructure procurement and maintenance (POSDAC)
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| 121 | \item[]\gph{360} infrastructure procurement and maintenance (LPAC)
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| 122 | \item[]\gph{140} Project management (POSDAC)
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| 123 | \item[]\gph{180} Project management (LPAC)
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[811] | 124 | \end{itemize}
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| 125 |
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| 126 | The table below shows a very preliminary cost estimate in
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[845] | 127 | FTE-MY (Full Time Equivalent Man Years) for each package. \\
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| 128 |
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| 129 | \begin{table}
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[811] | 130 | \begin{center}
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| 131 | \begin{tabular}[h]{|c|c||c|c|}
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| 132 | \hline
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| 133 | \makebox[2.5cm][c]{Package} & \makebox[2.5cm][c]{Cost} &
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| 134 | \makebox[2.5cm][c]{Package} & \makebox[2.5cm][c]{Cost} \\
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| 135 | \hline
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| 136 | % & & & \\
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| 137 | \ngph{421} & 5 & \ngph{426} & ? \\
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| 138 | %
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| 139 | \ngph{422} & 15 & \ngph{427} & 5 \\
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| 140 | %
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| 141 | \ngph{423} & 15 & \ngph{428} & 30 \\
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| 142 | %
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| 143 | \ngph{424} & 20 & \ngph{429} & 10 \\
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| 144 | %
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| 145 | \ngph{425} & ? & & \\
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| 146 | % & & & \\
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| 147 | %
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| 148 | \hline
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[845] | 149 | \ngph{320} & 3 & \ngph{140} & 4 \\
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| 150 | \ngph{360} & 2 & \ngph{180} & 1 \\
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[811] | 151 | \hline \hline
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| 152 | \multicolumn{2}{c}{\bf Total} & \multicolumn{2}{c}{\bf 110 + ?} \\
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| 153 | \hline
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| 154 | \end{tabular}
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| 155 | \end{center}
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[845] | 156 | \caption{Preliminary estimate of staff effort
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| 157 | (in Full Time Equivalent Man-Years FTE-MY)}
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| 158 | \end{table}
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[811] | 159 |
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| 160 |
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| 161 | \section{GPH421: RTA/QLA Real Time Assesment, Quick Look Analysis}
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[845] | 162 | \begin{itemize}
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| 163 | \item[]\gph{421.1} Quick look analysis
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| 164 | \item[]\gph{421.2} Evaluation of instrument health
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| 165 | \item[]\gph{421.1} Exchange of information with LFI
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| 166 | of mission/spacecraft/payload-dependent effects common
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| 167 | to both instruments
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| 168 | \end{itemize}
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[811] | 169 |
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| 170 | \section{GPH422: TOI processing}
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| 171 |
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| 172 | This package contains all the processing which has to be
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[845] | 173 | perfomed on TOI's (Time Ordered Information ) for either a
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| 174 | single-detector or multpile-detector, single-frequency set
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| 175 | of TOI's.
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[811] | 176 |
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| 177 | \begin{itemize}
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| 178 |
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| 179 | \item[]\gph{422.1} TOI statistical characterisation
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| 180 | \begin{itemize}
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[845] | 181 | \item[]422.1.1 Raw time-line statistical checks
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| 182 | \item[]422.1.2 Evaluation of noise components in TOI \\
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| 183 | (including use of redundancy to produce independent coadds)
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| 184 | \item[]422.1.3 Low frequency drifts
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| 185 | \item[]422.1.4 Correlation of TOI with housekeeping data and various
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| 186 | coordinate systems to look for systematic trends
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| 187 | \item[]422.1.5 correlation of TOI between channels to identify
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| 188 | cross-talk
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[811] | 189 | \end{itemize}
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| 190 |
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| 191 | \item[]\gph{422.2} TOI filters
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| 192 | \begin{itemize}
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[845] | 193 | \item[]422.2.1 Time domain filtering
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| 194 | \item[]422.2.2 Fourier filtering
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[811] | 195 | \end{itemize}
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| 196 |
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[845] | 197 | \item[]\gph{422.3} Deglitching and source extraction
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[811] | 198 | \begin{itemize}
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[845] | 199 | \item[]422.3.1 production of deglitched TOI, flagged to indicate cosmic
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| 200 | ray hits etc.
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| 201 | \item[]422.3.2 Point source detectors
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| 202 | \item[]422.3.3 Galaxy crossing detector
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| 203 | \item[]422.3.4 CMB dipole finder
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[811] | 204 | \end{itemize}
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| 205 |
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| 206 | \item[]\gph{422.4} Astrometric calibration \\
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[845] | 207 | Astrometric calibration using known point sources,
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| 208 | bright sources from the ECSC and galaxy crossing in TOI.
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[811] | 209 |
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[845] | 210 | \item[]\gph{422.5} Photometric calibration
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| 211 | \begin{itemize}
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| 212 | \item[]422.5.1 extended-source photometric calibration using known
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| 213 | sources (Galaxy) and COBE/FIRAS data
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| 214 | \item[]422.5.2 point-source photometric calibration using known sources
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| 215 | \item[]422.5.3 reconstruction of beam pattern seen by each detector
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| 216 | from observations of bright
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| 217 | \end{itemize}
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[811] | 218 |
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[845] | 219 | \item[]\gph{422.6} reconstruction of beam pattern seen by each
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| 220 | detector from observations of bright point sources \gph{422.3.2}
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| 221 | and galaxy crossing \gph{422.3.3}
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| 222 |
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| 223 | \item[]\gph{422.7} Production of single pointing co-added rings
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[811] | 224 |
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| 225 | \item[]\gph{422.9} Deliverables: Cleaned, calibrated TOI's :
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| 226 | \begin{itemize}
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| 227 | \item $(\alpha, \delta)$, roll angle, calibrated signal
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| 228 | \item Noise statistics
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| 229 | \item Offset/drifts
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| 230 | \item Co-added rings
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| 231 | \end{itemize}
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| 232 |
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| 233 | \end{itemize}
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| 234 |
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| 235 | \section{GPH423: Polarised TOI processing}
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| 236 |
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[845] | 237 | \gph{423.1} Additional TOI processing, as required to
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| 238 | reconstruct Stokes I,Q,U parameters from detector signals
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| 239 | in polarised channels.
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[811] | 240 |
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| 241 | \section{GPH424: Simple 2-D map reconstruction}
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| 242 |
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| 243 | This package contains all the necessary modules for
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| 244 | single frequency 2-D map reconstruction using the cleaned
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| 245 | TOI's from \gph{422} and \gph{423}. However \gph{424}
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| 246 | should only implement simple versions of 2-D map making
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| 247 | and systematic removal algorithms, as opposed to
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| 248 | \gph{424} which must provide a global, optimal 2-D map
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| 249 | reconstruction with systematic effects assessment.
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[845] | 250 |
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[811] | 251 | \begin{itemize}
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| 252 | \item[]\gph{424.1} 1D $\rightarrow$ 2D Projector
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[845] | 253 | \item[]\gph{424.2} Estimation and subtraction of systematic effects
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[811] | 254 | \begin{itemize}
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[845] | 255 | \item[]424.2.1 Low frequency noise estimation
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| 256 | \item[]424.2.2 far side determination using moon/earth during
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[811] | 257 | commissioning phases.
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[845] | 258 | \item[]424.2.3 far side lobe subtraction
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| 259 | \item[]424.2.4 use of redundancy to produce independent maps for
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| 260 | assessment of noise contributions
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[811] | 261 | \end{itemize}
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| 262 |
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| 263 | \item[]\gph{424.3} Main lobe
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| 264 | \begin{itemize}
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[845] | 265 | \item[]424.3.1 supplementing source extraction from TOI with
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| 266 | use of sources selected from frequency maps
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| 267 | \item[]424.3.2 reconstruction of beam pattern from maps using
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| 268 | known point and bright ECSC sources.
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[811] | 269 | \end{itemize}
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| 270 |
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| 271 |
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[845] | 272 | \item[]\gph{424.4} Astrometric calibration using known and
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| 273 | bright ECSC sources.
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[811] | 274 | \item[]\gph{424.5} Photometric calibration
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| 275 | \item[]\gph{424.6} Postage stamp maps for compact sources
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| 276 |
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| 277 | \item[]\gph{424.9} Deliverables: Full sky maps \\
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| 278 | \begin{itemize}
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| 279 | \item Sky maps per frequency channels $map_\nu (\alpha, \delta) $
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| 280 | \item Reprocessed TOI's
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| 281 | \end{itemize}
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| 282 |
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| 283 | \end{itemize}
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| 284 |
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| 285 | \section{GPH425: Global 2-D map reconstruction}
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| 286 |
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| 287 | Implementation of an optimal 2-D full sky map reconstruction,
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| 288 | with systematics (low frequency drifts, side lobes, \ldots)
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| 289 | estimation and removal. This package definition and
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| 290 | breakdown structure can only be refined at a later stage,
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| 291 | after preliminary studies of applicable methods.
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| 292 |
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| 293 | \begin{itemize}
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| 294 |
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| 295 | \item[]\gph{425.9} Deliverables: Full sky maps \\
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| 296 | \begin{itemize}
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[845] | 297 | \item Full sky maps for each frequency channels $map_\nu (\alpha, \delta) $
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[811] | 298 | \item Reprocessed, cleanead TOI's
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[845] | 299 | \item Beam patterns per detector and per frequency channel
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| 300 | \item Estimation of systematics
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[811] | 301 | \end{itemize}
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| 302 |
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| 303 | \end{itemize}
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| 304 |
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| 305 | \section{GPH426: Global polarised 2-D map reconstruction}
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| 306 |
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| 307 | This module, a extended version of \gph{425} has to take
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| 308 | into account specific constraints related to polarised TOI's
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[845] | 309 | and sky map reconstruction
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[811] | 310 |
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| 311 | \begin{itemize}
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| 312 |
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[845] | 313 | \item[]\gph{426.9} Deliverables: full sky maps for each
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[811] | 314 | polarisation component (I,Q,U) \\
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| 315 | \begin{itemize}
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[845] | 316 | \item Full sky maps for each frequency channels $map_\nu (\alpha, \delta) $
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[811] | 317 | for each component (I,Q,U)
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| 318 | \item Reprocessed, cleanead TOI's for I,Q,U
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| 319 | \item Noise and systematic effect maps and characteristics
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| 320 | \end{itemize}
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| 321 |
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| 322 | \end{itemize}
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| 323 |
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| 324 |
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| 325 | \section{GPH427: Early Compact Source Catalogue}
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| 326 |
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| 327 | \begin{itemize}
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| 328 |
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| 329 | \item[]\gph{427.9} Deliverables: Source catalogue \\
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| 330 | \begin{itemize}
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| 331 | \item Astrometrically calibrated source positions and
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| 332 | photometrically calibrated flux in each frequency band \\
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| 333 | $$(\alpha, \delta)_i , F_i^\nu, i=1,..,N$$
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[845] | 334 | \item Llocal sky maps in each frequency bands for areas
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| 335 | around all source positions.
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[811] | 336 | \item Related software and documentation
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| 337 | \end{itemize}
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| 338 |
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| 339 | \end{itemize}
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| 340 |
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| 341 | \section{GPH428: General software architecture and support modules}
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| 342 |
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| 343 | This package defines the general architecture for the level 2 processing
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| 344 | software and insures the compliance with IDIS framework.
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| 345 | It provides also the support modules for the different
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| 346 | level 2 packages (\gph{42x}) and their interfaces with IDIS
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| 347 | components.
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| 348 |
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| 349 | \begin{itemize}
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| 350 |
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[845] | 351 | \item[]\gph{428.1} Definition and construction of the software architecture
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[811] | 352 |
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[845] | 353 | \item[]\gph{428.2} Development and maintenance of TOI manipulation module
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| 354 | (including diagnostics and display)
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[811] | 355 |
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[845] | 356 | \item[]\gph{428.3} Development and maintenance of maps manipulation module
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| 357 | (including diagnostics and display of both full and local sky maps)
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[811] | 358 |
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| 359 | \item[]\gph{428.4} Instrument and satellite representation
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| 360 | \begin{itemize}
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[845] | 361 | \item[]428.4.1 Focal plane geometry
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| 362 | \item[]428.4.2 Detector's frequency response
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| 363 | \item[]428.4.3 Main and secondary lobes
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| 364 | \item[]428.4.4 Sampling and noise characteristics
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| 365 | \item[]428.4.5 Orbit and attitude
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| 366 | \item[]428.4.6 Thermal model
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[811] | 367 | \end{itemize}
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| 368 |
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[845] | 369 | \item[]\gph{428.5} Development/supply and maintenence
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| 370 | of standard numerical analysis tools
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[811] | 371 | \begin{itemize}
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[845] | 372 | \item[]428.5.1 Arrays (Matrix, Vectors, \ldots) and linear algebra
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| 373 | \item[]428.5.2 Fourier analysis, Wavelet analysis
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| 374 | \item[]428.5.3 Minimisation, optimisation
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| 375 | \item[]428.5.4 Statistical analysis
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[811] | 376 | \end{itemize}
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| 377 |
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| 378 | \item[]\gph{428.6} Interface with DMC
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| 379 |
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| 380 | \item[]\gph{428.7} Interface with the process coordinator
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| 381 |
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| 382 | \end{itemize}
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| 383 |
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| 384 | \section{GPH429: Integration and Validation}
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| 385 |
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| 386 | The assembly of the different L2 processing modules and
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| 387 | integration in the pipeline, as well as the
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| 388 | assessment of the overall quality of the delivered
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[845] | 389 | data products is the responsibility of \gph{429}.
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| 390 | The data quality validation activity includes iterative
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| 391 | work using Level 2 and 3 data products, and comparison of
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| 392 | HFI and LFI data for the common 100 GHz channel:
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| 393 | for example, activity in this workpackage may influence the details
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| 394 | of how the Global polarised 2D map reconstruction of \gph{426}
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| 395 | is performed, leading to the changes in the deliverables
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| 396 | from that workpackage.
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[811] | 397 | \begin{itemize}
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[845] | 398 | \item[]\gph{429.1} Pipeline management
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| 399 | \begin{itemize}
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| 400 | \item[]429.1.1 management and construction of pipeline
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| 401 | modules and their interfaces
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| 402 | \item[]429.1.2 IDIS and DMC interface
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| 403 | \item[]429.1.2 Management of pipeline operations
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| 404 | \end{itemize}
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| 405 | \item[]\gph{429.2} Iterative study of systematic effects
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| 406 | (e.g. map striping, etc) involving both level 2 and level 3 products
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| 407 | \item[]\gph{429.3} Combination, comparison and validation
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| 408 | of source catalogues derived from Levels 2 and 3 source extraction
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| 409 | \item[]\gph{429.4} Comparison of TOI data and maps between
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| 410 | HFI and LFI for common 100GHz channel
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[811] | 411 | \item[]\gph{429.9} Deliverables: Full sky maps for each
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| 412 | polarisation component (I,Q,U) \\
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| 413 | \begin{itemize}
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| 414 | \item Sky maps per frequency channels $map_\nu (\alpha, \delta) $
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| 415 | for each component (I,Q,U)
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| 416 | \item Reprocessed, cleanead TOI's for I,Q,U
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| 417 | \item Noise and systematic effect maps and characteristics
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| 418 | \item Photometric and Astrometric calibration
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| 419 | \item Associated software and documentation
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| 420 | \end{itemize}
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| 421 |
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| 422 | \end{itemize}
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| 423 |
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| 424 | \end{document}
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