Information Bottleneck Message Passing for Military Applications

J. Lewandowsky, M. Adrat, G. Bauch
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Abstract

Military communication systems naturally have strong requirements concerning the reliability and the robustness of their physical layer data transmission schemes. Modern channel coding and modulation schemes can meet these requirements in general, but their detection and decoding at the receiving end requires complex and power demanding high-precision implementations of digital algorithms, which are often not suitable for military applications. This motivates to explore novel techniques to build simple detection and decoding algorithms with good performance. In this article, we present novel results on the recent idea of using a machine learning framework termed the Information Bottleneck method to replace demanding implementations of the sum-product algorithm with very simple quantized message passing schemes. We provide a novel explanation, which links the Information Bottleneck decoder processing to the sum-product algorithm. Moreover, we present a novel Information Bottleneck demodulation scheme for quadrature amplitude modulation and discuss special advantages of the Information Bottleneck system design approach for military applications.
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军事应用中的信息瓶颈消息传递
军用通信系统对其物理层数据传输方案的可靠性和鲁棒性自然有很强的要求。现代信道编码和调制方案一般可以满足这些要求,但它们在接收端的检测和解码需要复杂且功率要求高的高精度数字算法实现,这通常不适合军事应用。这促使人们探索新的技术来构建简单、性能良好的检测和解码算法。在这篇文章中,我们提出了关于最近使用一种被称为信息瓶颈方法的机器学习框架的想法的新结果,用非常简单的量化消息传递方案取代要求很高的和积算法的实现。我们提供了一种新的解释,将信息瓶颈解码器处理与和积算法联系起来。此外,我们提出了一种新的正交调幅的信息瓶颈解调方案,并讨论了军事应用中信息瓶颈系统设计方法的特殊优点。
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