English

Data compression on board the PLANCK Satellite Low Frequency Instrument: optimal compression rate

Astrophysics 2007-05-23 v1

Abstract

Data on board the future PLANCK Low Frequency Instrument (LFI), to measure the Cosmic Microwave Background (CMB) anisotropies, consist of NN differential temperature measurements, expanding a range of values we shall call RR. Preliminary studies and telemetry allocation indicate the need of compressing these data by a ratio of cr\simgt10c_r \simgt 10. Here we present a study of entropy for (correlated multi-Gaussian discrete) noise, showing how the optimal compression cr,optc_{r,opt}, for a linearly discretized data set with Nbits=log2NmaxN_{bits}=\log_2{N_{max}} bits is given by: crNbits/log2(2πe σe/Δ)c_r \simeq {N_{bits}/\log_2(\sqrt{2\pi e} ~\sigma_e/\Delta)}, where σe(detC)1/2N\sigma_e\equiv (det C)^{1/2N} is some effective noise rms given by the covariance matrix CC and ΔR/Nmax\Delta \equiv R / N_{max} is the digital resolution. This Δ\Delta only needs to be as small as the instrumental white noise RMS: ΔσT2mK\Delta \simeq \sigma_T \simeq 2 mK (the nominal μK\mu K pixel sensitivity will only be achieved after averaging). Within the currently proposed Nbits=16N_{bits}=16 representation, a linear analogue to digital converter (ADC) will allow the digital storage of a large dynamic range of differential temperature R=NmaxΔR= N_{max} \Delta 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: σeσT\sigma_e \simeq \sigma_T, which could yield large compression rates cr,opt8c_{r,opt} \simeq 8. This is the maximum lossless compression possible. In practice, point sources and 1/f1/f noise will produce σe>σT\sigma_e > \sigma_T and cr,opt<8c_{r,opt} < 8. This strategy seems safer than non-linear ADC or data reduction schemes (which could also be used at some stage).

Keywords

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

R2 v1 2026-07-22T09:43:06.762Z