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Compressed Coding, AMP-Based Decoding, and Analog Spatial Coupling

delete2020-12-01
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OA
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S
Shansuo Liang *
C
Chulong Liang
马俊杰 cover
马俊杰 (Junjie Ma)
李平 (Li Ping)
DOI:10.1109/TCOMM.2020.3024871delete
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Abstract

Abstract

En 中文
This paper considers a compressed-coding scheme that combines compressed sensing with forward error control coding. Approximate message passing (AMP) is used to decode the message. Based on the state evolution analysis of AMP, we derive the performance limit of compressed-coding. We show that compressed-coding can approach Gaussian capacity at a very low compression ratio. Further, the results are extended to systems involving non-linear effects such as clipping. We show that the capacity approaching property can still be maintained when generalized AMP is used to decode the message. To approach the capacity, a low-rate underlying code should be designed according to the curve matching principle, which is complicated in practice. Instead, analog spatial-coupling is used to avoid sophisticated low-rate code design. In the end, we study the coupled scheme in a multiuser environment, where analog spatial-coupling can be realized in a distributive way. The overall block length can be shared by many users, which reduces block length per-user.
Keywords:
Decoding
Error correction
Encoding
Error correction codes
Signal to noise ratio
Modulation
Compressed sensing
Compressed sensing
forward error control coding
approximate message passing
state evolution
area theorem and analog spatial-coupling
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Journal

IEEE Transactions on Communications cover
IEEE Transactions on Communications
IF:
8.3
Papers:
1.2W
Citations:
3.6W

Organization

C
City University of Hong Kong
Scholars:
2.3W
Papers: 3.0W
Citations: 6.1W
A
academy of mathematics & system sciences, cas
Scholars:
755
Papers: 768
Citations: 0