A maximum entropy framework for statistical modeling of underwater acoustic communication channels

François-Xavier Socheleau, C. Laot, J. Passerieux
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引用次数: 19

Abstract

Based on a method of inductive inference known as the principle of maximum entropy, a time-varying underwater acoustic channel model is derived. The resulting model is proved to be consistent so that it only relies on the available knowledge of the environment to model. While requiring only a few parameters (e.g. channel average power and Doppler spread), it is shown through fading statistics and bit error rates measurements that accurate channel impulse responses can be obtained for communication applications. The Matlab code of the proposed model is available at http://perso.telecom-bretagne. eu/fxsocheleau/software.
水声通信信道统计建模的最大熵框架
基于最大熵原理的归纳推理方法,推导了时变水声信道模型。结果模型被证明是一致的,因此它只依赖于环境的可用知识来建模。虽然只需要几个参数(如信道平均功率和多普勒扩频),但通过衰落统计和误码率测量可以获得准确的信道脉冲响应,用于通信应用。所提出的模型的Matlab代码可在http://perso.telecom-bretagne上获得。欧盟/ fxsocheleau /软件。
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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