Data compression on board the PLANCK Satellite Low Frequency Instrument: optimal compression rate
Abstract
Data on board the future PLANCK Low Frequency Instrument (LFI), to measure the Cosmic Microwave Background (CMB) anisotropies, consist of differential temperature measurements, expanding a range of values we shall call . Preliminary studies and telemetry allocation indicate the need of compressing these data by a ratio of . Here we present a study of entropy for (correlated multi-Gaussian discrete) noise, showing how the optimal compression , for a linearly discretized data set with bits is given by: , where is some effective noise rms given by the covariance matrix and is the digital resolution. This only needs to be as small as the instrumental white noise RMS: (the nominal pixel sensitivity will only be achieved after averaging). Within the currently proposed representation, a linear analogue to digital converter (ADC) will allow the digital storage of a large dynamic range of differential temperature accounting for possible instrument drifts and instabilities (which could be reduced by proper on-board calibration). A well calibrated signal will be dominated by thermal (white) noise in the instrument: , which could yield large compression rates . This is the maximum lossless compression possible. In practice, point sources and noise will produce and . This strategy seems safer than non-linear ADC or data reduction schemes (which could also be used at some stage).
Cite
@article{arxiv.astro-ph/9810205,
title = {Data compression on board the PLANCK Satellite Low Frequency Instrument: optimal compression rate},
author = {E. Gaztanaga and J. Barriga and A. Romeo and P. Fosalba and E. Elizalde},
journal= {arXiv preprint arXiv:astro-ph/9810205},
year = {2007}
}
Comments
LaTeX file, To appear in Proceedings of the UIMP98 workshop "The CMB and the Planck Mission" in Santander