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On Code Design for Wireless Channels with Additive Radar Interference

机译:具有加性雷达干扰的无线信道的代码设计

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This paper considers the problem of code design for a channel where communications and radar systems coexist, modeled as having both Additive White Gaussian Noise (AWGN) and Additive Radar Interference (ARI). The question of how to adapt or re-design convolutional codes (decoded by the Viterbi algorithm) and LDPC codes (decoded by the sum-product algorithm and optimized by using the EXIT chart method) to effectively handle the overall non-Gaussian ARI noise is investigated. Interestingly, it is found that codes optimized for AWGN-only noise and decoded using a decoding metric that accounts for both the Signal-to-Noise Ratio (SNR) of the useful signal and the Interference-to-Noise Ratio (INR) of the radar signal is only slightly outperformed by codes that are optimized for the AWGN+ARI channel.
机译:本文考虑了通信和雷达系统共存的信道的代码设计问题,建模为同时具有加性高斯白噪声(AWGN)和加性雷达干扰(ARI)。如何适应或重新设计卷积码(由维特比算法解码)和LDPC码(由和积算法解码并使用EXIT图表方法进行优化)以有效处理整体非高斯ARI噪声的问题是调查。有趣的是,发现针对仅AWGN噪声而优化的代码,并使用考虑了有用信号的信噪比(SNR)和干扰信号的干扰噪声比(INR)的解码度量进行解码。雷达信号仅略微优于针对AWGN + ARI通道而优化的代码。

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