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[845]1\documentclass[twoside,11pt]{article}
[1142]2
3% Definition pour Documentation L2
4\usepackage{defdocl2}
5
[811]6% Package standard : Utilisation de caracteres accentues, mode francais et graphique
[1166]7% \usepackage[latin1]{inputenc}
8% \usepackage[T1]{fontenc}
9% \usepackage{babel}[english]
[1142]10% \usepackage{graphicx}
[845]11% package a mettre pour faire du pdf
[1142]12% \usepackage{palatino}
[811]13
[1142]14
[811]15% Extension de symboles mathematiques
16\usepackage{amssymb}
[1166]17\usepackage{amsmath}
[811]18
19
[1142]20% Definition de taille de page (c'est ds defdocl2.sty)
[811]21\newcommand{\bul}{$\bullet \ $}
22\newcommand{\gph}[1]{ {\bf GPH#1} }
23\newcommand{\ngph}[1]{ GPH#1 }
24
[1142]25% Symboles en bold
26\newcommand{\bnu}{\boldsymbol{\nu}}
27\newcommand{\bbold}{\boldsymbol{b}}
28\newcommand{\dbold}{\boldsymbol{d}}
[1166]29%\newcommand{\bnu}{\nu}
30%\newcommand{\dbold}{d}
31%\newcommand{\bbold}{b}
[1142]32
[811]33\begin{document}
34
35\begin{titlepage}
[1142]36\titleph{
[811]37Planck HFI L2 \\
[845]38Work Breakdown Structure \\
39Package Breakdown Structure
[811]40}
[1142]41% Authors list
42\authors{
43R. Ansari & LAL, Orsay \\ % & {\tt ansari@lal.in2p3.fr} \\
44I.J. Grivell & ICSTM, London \\
45G. Le Meur & LAL, Orsay \\
[845]46R.G. Mann & IfA, Edinburgh \\
[1142]47M. Rowan-Robinson & ICSTM, London \\
[845]48S. Serjeant & ICSTM \\
[1142]49J.F. Sygnet & IAS, Orsay \\ % {\tt Jean-Francois.Sygnet@ias.fr} \\
50}
[845]51
[1142]52\titlepfd{PL-HFI-LAL-PW-L2001}{2.0}
[811]53
54\end{titlepage}
55
[1142]56% -------- Revision history
57\revisionhistory
[845]58\begin{itemize}
59\item Version 1.0 (February 2000 - CVS version 1.1) \\
60Draft version presented at the HFI consortium meeting
61\item Version 1.1 (April 2000 - CVS version 1.2) \\
62Draft updated using the document prepared at ISCTM and IfA (Edinburgh)
[1142]63\item Version 2.0 (August 2000 - CVS version 1.3) \\
64Inclusion of a section describing notation and conventions,
65flow charts. A more detailed description of deliverables is also included.
[845]66\end{itemize}
67
[1142]68% -------- Table of content
[845]69\newpage
[811]70\tableofcontents
71\newpage
72
[845]73\section{Introduction}
[811]74This document contains a preliminary version a the
75Work Breakdown Structure (WBS), Package Breakdown Structure
76(PBS) for Planck-HFI Level 2 data processing.
77
[845]78The Level 2 activity of the HFI Data Processing Centre (DPC)
79is divided between the Paris-Orsay-Saclay Data Analysis Centre
80(POSDAC) and the London Planck Analysis Centre (LPAC).
81POSDAC will run the Level 2 data processing pipeline and have overall
82responsibility for the collaborative work involved in its
83design and implementation. LPAC will a major role for in the
84activities that iterate and overlap between Level 2
85and Level 3 (for which the Cambridge Planck Analysis Centre,
86CPAC, plays the role analogous to POSDAC at Level 2)
[811]87
[845]88\section{HFI L2 processing software packages}
89The Level 2 workpackages are listed below, with a numbering
90scheme derived from that in the
91{\it HFI Science Implementation Plan (SIP: draft of 19/11/99) }.
92All packages should be compliant with the general software architecture and use the services of the corresponding support modules (\gph{428}).
93
[811]94\begin{itemize}
95\item[]\gph{421} RTA/QLA : Real Time Assesment, Quick Look Analysis.
96\item[]\gph{422} TOI processing
97\item[]\gph{423} Polarised TOI processing
[1142]98\item[]\gph{424} Basic 2-D map reconstruction from TOI's
99\item[]\gph{425} Optimal 2-D map reconstruction
100\item[]\gph{426} Optimal 2-D polarised map reconstruction
[811]101\item[]\gph{427} Early Compact Source Catalogue
102\item[]\gph{428} General software architecture and support modules
103\item[]\gph{429} Integration and Validation
104\end{itemize}
105
[1142]106The package \gph424 should provide a resonably fast and simple
107method for reconstructing 2-D maps from cleaned TOI's (from
108\gph422 and \gph423), removing systematic effects (destriping)
109and deconvolving the antenna beam pattern. An iterative method
110is foreseen, capable of dealing with partial knowledge of
111instrument caracteristics.
112The optimal 2-D map reconstruction packages (\gph425 and \gph426)
113will implement the best feasible method for analysing the whole
114data set from the HFI instrument and building the full sky frequency
115maps.
[845]116
[811]117\begin{itemize}
[845]118\item[]\gph{320} infrastructure procurement and maintenance (POSDAC)
119\item[]\gph{360} infrastructure procurement and maintenance (LPAC)
120\item[]\gph{140} Project management (POSDAC)
121\item[]\gph{180} Project management (LPAC)
[811]122\end{itemize}
123
124The table below shows a very preliminary cost estimate in
[845]125FTE-MY (Full Time Equivalent Man Years) for each package. \\
126
127\begin{table}
[811]128\begin{center}
129\begin{tabular}[h]{|c|c||c|c|}
130\hline
131\makebox[2.5cm][c]{Package} & \makebox[2.5cm][c]{Cost} &
132\makebox[2.5cm][c]{Package} & \makebox[2.5cm][c]{Cost} \\
133\hline
134% & & & \\
135\ngph{421} & 5 & \ngph{426} & ? \\
136%
137\ngph{422} & 15 & \ngph{427} & 5 \\
138%
139\ngph{423} & 15 & \ngph{428} & 30 \\
140%
141\ngph{424} & 20 & \ngph{429} & 10 \\
142%
143\ngph{425} & ? & & \\
144% & & & \\
145%
146\hline
[845]147\ngph{320} & 3 & \ngph{140} & 4 \\
148\ngph{360} & 2 & \ngph{180} & 1 \\
[811]149\hline \hline
150\multicolumn{2}{c}{\bf Total} & \multicolumn{2}{c}{\bf 110 + ?} \\
151\hline
152\end{tabular}
153\end{center}
[845]154\caption{Preliminary estimate of staff effort
155(in Full Time Equivalent Man-Years FTE-MY)}
156\end{table}
[811]157
[1142]158\section{HFI data processing steps}
159The major steps for processing Planck-HFI data are briefly described here.
160For the sake of clarity, we define here the notation and conventions used
161throughout this document for referring to the different data components
162in planck HFI. Most of these data components are also defined in
163\cite{datamodel}.
[811]164
[1142]165\subsection{Notation and conventions}
166\begin{itemize}
167\item[] {\bf Coordinates:} The spacecraft attitude is defined by the spin
168axis direction $SA (\theta, \phi)$. $\psi$ is the third angle defining
169the position of the spacecraft and thus a given detectors view
170direction and beam pattern orientation.
171A given sky direction is denoted $(\alpha,\delta)$ in equatorial coordinates,
172$(l,b)$ in Galactic coordinates or $(\lambda,\beta)$ in ecliptic coordinate.
173\item[] {\bf Detector:} A given HFI bolometer read-out channel. The corresponding
174signal is denoted $\dbold(t)$ or $\bbold(t)$ $\dbold^j(t)$ or $\bbold^j(t)$ where $j$ is the
175bolometer number.
176\item[] {\bf Frequency channel:} The set of detectors working in the
177same frequency range. This information is only obtained by combining
178information from several detectors in the corresponding frequency band.
179The subscript $\bnu$ is used to denote a frequency channel. The sky map
180in a given frequency band would be written as $Sky (\theta,\phi) \vert ^{\bnu}$.
181\item[] {\bf Scan:} The time interval corresponding to a nominal spin axis
182direction
183
184\end{itemize}
185
186\subsection{Processing steps}
187
188
189
[811]190\section{GPH421: RTA/QLA Real Time Assesment, Quick Look Analysis}
[845]191\begin{itemize}
192\item[]\gph{421.1} Quick look analysis
193\item[]\gph{421.2} Evaluation of instrument health
194\item[]\gph{421.1} Exchange of information with LFI
195of mission/spacecraft/payload-dependent effects common
196to both instruments
197\end{itemize}
[811]198
199\section{GPH422: TOI processing}
200
201This package contains all the processing which has to be
[845]202perfomed on TOI's (Time Ordered Information ) for either a
203single-detector or multpile-detector, single-frequency set
[1142]204of TOI's. A very rough sketch of data flow and processing
205steps for GPH422 is given in figure \ref{fig422}.
[811]206
[1142]207\begin{figure}[htbp]
208\mbox{\hspace*{1cm} \includegraphics[width=7cm]{gph422_1.eps}
209 \includegraphics[width=7cm]{gph422_2.eps} }
210\caption{Data flow and processing steps for GPH422}
211\label{fig422}
212\end{figure}
213
[811]214\begin{itemize}
215
216\item[]\gph{422.1} TOI statistical characterisation
217\begin{itemize}
[845]218\item[]422.1.1 Raw time-line statistical checks
219\item[]422.1.2 Evaluation of noise components in TOI \\
220(including use of redundancy to produce independent coadds)
221\item[]422.1.3 Low frequency drifts
222\item[]422.1.4 Correlation of TOI with housekeeping data and various
223coordinate systems to look for systematic trends
224\item[]422.1.5 correlation of TOI between channels to identify
225cross-talk
[811]226\end{itemize}
227
228\item[]\gph{422.2} TOI filters
229\begin{itemize}
[845]230\item[]422.2.1 Time domain filtering
231\item[]422.2.2 Fourier filtering
[811]232\end{itemize}
233
[845]234\item[]\gph{422.3} Deglitching and source extraction
[811]235\begin{itemize}
[845]236\item[]422.3.1 production of deglitched TOI, flagged to indicate cosmic
237ray hits etc.
238\item[]422.3.2 Point source detectors
239\item[]422.3.3 Galaxy crossing detector
240\item[]422.3.4 CMB dipole finder
[811]241\end{itemize}
242
243\item[]\gph{422.4} Astrometric calibration \\
[845]244Astrometric calibration using known point sources,
245bright sources from the ECSC and galaxy crossing in TOI.
[811]246
[845]247\item[]\gph{422.5} Photometric calibration
248\begin{itemize}
249\item[]422.5.1 extended-source photometric calibration using known
250sources (Galaxy) and COBE/FIRAS data
251\item[]422.5.2 point-source photometric calibration using known sources
252\item[]422.5.3 reconstruction of beam pattern seen by each detector
253from observations of bright
254\end{itemize}
[811]255
[845]256\item[]\gph{422.6} reconstruction of beam pattern seen by each
257detector from observations of bright point sources \gph{422.3.2}
258and galaxy crossing \gph{422.3.3}
259
260\item[]\gph{422.7} Production of single pointing co-added rings
[811]261
262\item[]\gph{422.9} Deliverables: Cleaned, calibrated TOI's :
263\begin{itemize}
264\item $(\alpha, \delta)$, roll angle, calibrated signal
265\item Noise statistics
266\item Offset/drifts
267\item Co-added rings
268\end{itemize}
269
270\end{itemize}
271
272\section{GPH423: Polarised TOI processing}
273
[845]274\gph{423.1} Additional TOI processing, as required to
275reconstruct Stokes I,Q,U parameters from detector signals
276in polarised channels.
[811]277
278\section{GPH424: Simple 2-D map reconstruction}
279
280This package contains all the necessary modules for
281single frequency 2-D map reconstruction using the cleaned
282TOI's from \gph{422} and \gph{423}. However \gph{424}
283should only implement simple versions of 2-D map making
284and systematic removal algorithms, as opposed to
285\gph{424} which must provide a global, optimal 2-D map
286reconstruction with systematic effects assessment.
[845]287
[811]288\begin{itemize}
289\item[]\gph{424.1} 1D $\rightarrow$ 2D Projector
[845]290\item[]\gph{424.2} Estimation and subtraction of systematic effects
[811]291\begin{itemize}
[845]292\item[]424.2.1 Low frequency noise estimation
293\item[]424.2.2 far side determination using moon/earth during
[811]294commissioning phases.
[845]295\item[]424.2.3 far side lobe subtraction
296\item[]424.2.4 use of redundancy to produce independent maps for
297assessment of noise contributions
[811]298\end{itemize}
299
300\item[]\gph{424.3} Main lobe
301\begin{itemize}
[845]302\item[]424.3.1 supplementing source extraction from TOI with
303use of sources selected from frequency maps
304\item[]424.3.2 reconstruction of beam pattern from maps using
305known point and bright ECSC sources.
[811]306\end{itemize}
307
308
[845]309\item[]\gph{424.4} Astrometric calibration using known and
310bright ECSC sources.
[811]311\item[]\gph{424.5} Photometric calibration
312\item[]\gph{424.6} Postage stamp maps for compact sources
313
314\item[]\gph{424.9} Deliverables: Full sky maps \\
315\begin{itemize}
316\item Sky maps per frequency channels $map_\nu (\alpha, \delta) $
317\item Reprocessed TOI's
318\end{itemize}
319
320\end{itemize}
321
322\section{GPH425: Global 2-D map reconstruction}
323
324Implementation of an optimal 2-D full sky map reconstruction,
325with systematics (low frequency drifts, side lobes, \ldots)
326estimation and removal. This package definition and
327breakdown structure can only be refined at a later stage,
328after preliminary studies of applicable methods.
329
330\begin{itemize}
331
332\item[]\gph{425.9} Deliverables: Full sky maps \\
333\begin{itemize}
[845]334\item Full sky maps for each frequency channels $map_\nu (\alpha, \delta) $
[811]335\item Reprocessed, cleanead TOI's
[845]336\item Beam patterns per detector and per frequency channel
337\item Estimation of systematics
[811]338\end{itemize}
339
340\end{itemize}
341
342\section{GPH426: Global polarised 2-D map reconstruction}
343
344This module, a extended version of \gph{425} has to take
345into account specific constraints related to polarised TOI's
[845]346and sky map reconstruction
[811]347
348\begin{itemize}
349
[845]350\item[]\gph{426.9} Deliverables: full sky maps for each
[811]351polarisation component (I,Q,U) \\
352\begin{itemize}
[845]353\item Full sky maps for each frequency channels $map_\nu (\alpha, \delta) $
[811]354for each component (I,Q,U)
355\item Reprocessed, cleanead TOI's for I,Q,U
356\item Noise and systematic effect maps and characteristics
357\end{itemize}
358
359\end{itemize}
360
361
362\section{GPH427: Early Compact Source Catalogue}
363
364\begin{itemize}
365
366\item[]\gph{427.9} Deliverables: Source catalogue \\
367\begin{itemize}
368\item Astrometrically calibrated source positions and
369photometrically calibrated flux in each frequency band \\
370$$(\alpha, \delta)_i , F_i^\nu, i=1,..,N$$
[845]371\item Llocal sky maps in each frequency bands for areas
372around all source positions.
[811]373\item Related software and documentation
374\end{itemize}
375
376\end{itemize}
377
378\section{GPH428: General software architecture and support modules}
379
380This package defines the general architecture for the level 2 processing
381software and insures the compliance with IDIS framework.
382It provides also the support modules for the different
383level 2 packages (\gph{42x}) and their interfaces with IDIS
384components.
385
386\begin{itemize}
387
[845]388\item[]\gph{428.1} Definition and construction of the software architecture
[811]389
[845]390\item[]\gph{428.2} Development and maintenance of TOI manipulation module
391(including diagnostics and display)
[811]392
[845]393\item[]\gph{428.3} Development and maintenance of maps manipulation module
394(including diagnostics and display of both full and local sky maps)
[811]395
396\item[]\gph{428.4} Instrument and satellite representation
397\begin{itemize}
[845]398\item[]428.4.1 Focal plane geometry
399\item[]428.4.2 Detector's frequency response
400\item[]428.4.3 Main and secondary lobes
401\item[]428.4.4 Sampling and noise characteristics
402\item[]428.4.5 Orbit and attitude
403\item[]428.4.6 Thermal model
[811]404\end{itemize}
405
[845]406\item[]\gph{428.5} Development/supply and maintenence
407of standard numerical analysis tools
[811]408\begin{itemize}
[845]409\item[]428.5.1 Arrays (Matrix, Vectors, \ldots) and linear algebra
410\item[]428.5.2 Fourier analysis, Wavelet analysis
411\item[]428.5.3 Minimisation, optimisation
412\item[]428.5.4 Statistical analysis
[811]413\end{itemize}
414
415\item[]\gph{428.6} Interface with DMC
416
417\item[]\gph{428.7} Interface with the process coordinator
418
419\end{itemize}
420
421\section{GPH429: Integration and Validation}
422
423The assembly of the different L2 processing modules and
424integration in the pipeline, as well as the
425assessment of the overall quality of the delivered
[845]426data products is the responsibility of \gph{429}.
427The data quality validation activity includes iterative
428work using Level 2 and 3 data products, and comparison of
429HFI and LFI data for the common 100 GHz channel:
430for example, activity in this workpackage may influence the details
431of how the Global polarised 2D map reconstruction of \gph{426}
432is performed, leading to the changes in the deliverables
433from that workpackage.
[811]434\begin{itemize}
[845]435\item[]\gph{429.1} Pipeline management
436\begin{itemize}
437\item[]429.1.1 management and construction of pipeline
438modules and their interfaces
439\item[]429.1.2 IDIS and DMC interface
440\item[]429.1.2 Management of pipeline operations
441\end{itemize}
442\item[]\gph{429.2} Iterative study of systematic effects
443(e.g. map striping, etc) involving both level 2 and level 3 products
444\item[]\gph{429.3} Combination, comparison and validation
445of source catalogues derived from Levels 2 and 3 source extraction
446\item[]\gph{429.4} Comparison of TOI data and maps between
447HFI and LFI for common 100GHz channel
[811]448\item[]\gph{429.9} Deliverables: Full sky maps for each
449polarisation component (I,Q,U) \\
450\begin{itemize}
451\item Sky maps per frequency channels $map_\nu (\alpha, \delta) $
452for each component (I,Q,U)
453\item Reprocessed, cleanead TOI's for I,Q,U
454\item Noise and systematic effect maps and characteristics
455\item Photometric and Astrometric calibration
456\item Associated software and documentation
457\end{itemize}
458
459\end{itemize}
460
[1142]461\begin{thebibliography}{10}
462\bibitem{datamodel}
463\newblock {\bf PL-COM-OAT-TN-003}
464\newblock {Planck IDIS Data Model Description Document}
465\end{thebibliography}
466
467
[811]468\end{document}
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