Analog distributed source-channel coding using sinusoids

J. Karlsson, M. Skoglund
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引用次数: 8

Abstract

In a wireless sensor network, it is likely that the measurements of the sensors are correlated. Distributed source coding can be used to reduce transmission rate or mitigate the effects of the channel noise in the case of analog transmission. In this paper, we propose a novel scheme for implementing distributed source-channel coding based on analog mappings. We assume that an analog source is to be transmitted to a receiver that has access to correlated side information, as in the Wyner-Ziv problem. From the Cramér-Rao lower bound, we observe general properties of analog distributed source-channel mappings. It is especially clear how the stretch factor influences the performance. From this observation we propose two different mappings based on sinusoidal waveforms. The proposed transmission scheme is numerically evaluated and shown to perform well, particularly in the low-SNR regime. Furthermore, it requires no encoding or decoding delay, making it suitable for delay-critical applications in wireless sensor networks.
模拟分布式源信道编码使用正弦波
在无线传感器网络中,传感器的测量值很可能是相关的。在模拟传输的情况下,分布式源编码可用于降低传输速率或减轻信道噪声的影响。本文提出了一种基于模拟映射的分布式信源信道编码方案。我们假设模拟源要传输到一个可以访问相关侧信息的接收器,如Wyner-Ziv问题。从cram - rao下界,我们观察到模拟分布式源信道映射的一般性质。拉伸因素对性能的影响尤为明显。根据这一观察,我们提出了两种基于正弦波形的不同映射。所提出的传输方案进行了数值评估,并显示出良好的性能,特别是在低信噪比的情况下。此外,它不需要编码或解码延迟,使其适用于无线传感器网络中的延迟关键应用。
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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