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A fast block-based nonlinear decoding algorithm for ΣΔ modulators

Published: 01 June 1995 Publication History

Abstract

Previous work has established that the digital output of a ΣΔ modulator as an A/D converter contains more information about the analog input than is extracted with conventional linear filtering. Under reasonable mathematical assumptions, optimal nonlinear decoding of the digital output can achieve significantly larger signal-to-noise ratios than linear filtering. However, the hitherto proposed decoding algorithms only demonstrate conceptual feasibility and are impractical from a computational point of view. We present a new block-based decoding algorithm that, like previous work, employs projections onto convex sets. The algorithm owes its speed to a change of projection norm, an accelerated convergence scheme, and a decimation-like subsampling; it is on the order of 104-105 times faster than one previously published algorithm for typical parameter values, and about 2-10 times slower than linear decoding. The new algorithm is applicable to all currently popular ΣΔ architectures.

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  • (2023)L${}_{\text{2}}$min${}^{\text{2/2s}}$: Efficient Linear Reconstruction Filter for Incremental Delta-Sigma ADCsIEEE Transactions on Signal Processing10.1109/TSP.2023.330577471(3229-3241)Online publication date: 1-Jan-2023

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cover image IEEE Transactions on Signal Processing
IEEE Transactions on Signal Processing  Volume 43, Issue 6
June 1995
229 pages

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IEEE Press

Publication History

Published: 01 June 1995

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  • (2023)L${}_{\text{2}}$min${}^{\text{2/2s}}$: Efficient Linear Reconstruction Filter for Incremental Delta-Sigma ADCsIEEE Transactions on Signal Processing10.1109/TSP.2023.330577471(3229-3241)Online publication date: 1-Jan-2023

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