Coding for Quasi-Static Fading Channel with Imperfect CSI at the Transmitter and Quantized Feedback

Fuente: arXiv
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Autores principales: Yang, Yuhan, Han, Mei, Zhang, Haonan, Yuan, Haoheng, Cheng, Fan, Dai, Bin
Formato: Preprint
Publicado: 2025
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author Yang, Yuhan
Han, Mei
Zhang, Haonan
Yuan, Haoheng
Cheng, Fan
Dai, Bin
author_facet Yang, Yuhan
Han, Mei
Zhang, Haonan
Yuan, Haoheng
Cheng, Fan
Dai, Bin
contents The classical Schalkwijk-Kailath (SK) scheme for the additive Gaussian noise channel with noiseless feedback is highly efficient since its coding complexity is extremely low and the decoding error doubly exponentially decays as the coding blocklength tends to infinity. However, its application to the fading channel with imperfect CSI at the transmitter (I-CSIT) is challenging since the SK scheme is sensitive to the CSI. In this paper, we investigate how to design SK-type scheme for the quasi-static fading channel with I-CSIT and quantized feedback. By introducing modulo lattice function and an auxiliary signal into the SK-type encoder-decoder of the transceiver, we show that the decoding error caused by the I-CSIT can be perfectly eliminated, resulting in the success of designing SK-type scheme for such a case. The study of this paper provides a way to design efficient coding scheme for fading channels in the presence of imperfect CSI and quantized feedback.
format Preprint
id arxiv_https___arxiv_org_abs_2507_01464
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Coding for Quasi-Static Fading Channel with Imperfect CSI at the Transmitter and Quantized Feedback
Yang, Yuhan
Han, Mei
Zhang, Haonan
Yuan, Haoheng
Cheng, Fan
Dai, Bin
Information Theory
The classical Schalkwijk-Kailath (SK) scheme for the additive Gaussian noise channel with noiseless feedback is highly efficient since its coding complexity is extremely low and the decoding error doubly exponentially decays as the coding blocklength tends to infinity. However, its application to the fading channel with imperfect CSI at the transmitter (I-CSIT) is challenging since the SK scheme is sensitive to the CSI. In this paper, we investigate how to design SK-type scheme for the quasi-static fading channel with I-CSIT and quantized feedback. By introducing modulo lattice function and an auxiliary signal into the SK-type encoder-decoder of the transceiver, we show that the decoding error caused by the I-CSIT can be perfectly eliminated, resulting in the success of designing SK-type scheme for such a case. The study of this paper provides a way to design efficient coding scheme for fading channels in the presence of imperfect CSI and quantized feedback.
title Coding for Quasi-Static Fading Channel with Imperfect CSI at the Transmitter and Quantized Feedback
topic Information Theory
url https://arxiv.org/abs/2507.01464