Joint channel decoding with feedback power control in sensor networks with correlated sources

A. Abrardo, G. Ferrari, M. Martalò, F. Perna
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引用次数: 1

Abstract

In this paper, we derive feedback power control strategies for block-faded multiple access schemes with correlated sources. In particular, upon the derivation of the feasible signal-to-noise ratio (SNR) region for the considered multiple access schemes, i.e., the multidimensional SNR region where error-free communications are, in principle, possible, two feedback power control strategies are proposed: (i) a “classical” feedback power control strategy, which aims at “equalizing” the SNRs at the AP over all communication links, and (ii) an “optimal” feedback power control strategy, which tries to make the network operational point fall in the feasible SNR region at the lowest energy consumption. These strategies will be referred to as balanced SNR and unbalanced SNR, respectively. While they require unlimited power control range at the sources (the sensors), we then propose “practical” implementations by limiting the power control range. We evalute the benefits brought by the use of the proposed feedback power control strategies considering joint channel decoding (JCD) schemes, where the sensors use channel coding and a proper iterative decoding algorithm is considered at the AP. The analysis is carried out considering the use of low-density parity-check (LDPC) codes and a serially concatenated convolutional code (SCCC).
基于反馈功率控制的相关源传感器网络联合信道解码
本文给出了具有相关源的块衰落多址方案的反馈功率控制策略。特别是,在推导所考虑的多址方案的可行信噪比(SNR)区域,即原则上可能实现无差错通信的多维信噪比区域的基础上,提出了两种反馈功率控制策略:(1)“经典”反馈功率控制策略,其目的是“均衡”所有通信链路AP处的信噪比;(2)“最优”反馈功率控制策略,其目的是在最低能耗下使网络工作点落在可行的信噪比区域。这些策略分别被称为平衡信噪比和不平衡信噪比。虽然它们需要源(传感器)的无限功率控制范围,但我们随后通过限制功率控制范围提出“实用”实现。考虑联合信道解码(JCD)方案,我们评估了使用所提出的反馈功率控制策略带来的好处,其中传感器使用信道编码,并在AP考虑适当的迭代解码算法。考虑使用低密度奇偶校验(LDPC)码和串行级联卷积码(SCCC)进行了分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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