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Analysis of and techniques for adaptive equalization for underwater acoustic communication

机译:水声通信自适应均衡分析与技术

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摘要

Underwater wireless communication is quickly becoming a necessity for applications in ocean science, defense, and homeland security. Acoustics remains the only practical means of accomplishing long-range communication in the ocean. The acoustic communication channel is fraught with difficulties including limited available bandwidth, long delay-spread, time-variability, and Doppler spreading. These difficulties reduce the reliability of the communication system and make high data-rate communication challenging. Adaptive decision feedback equalization is a common method to compensate for distortions introduced by the underwater acoustic channel. Limited work has been done thus far to introduce the physics of the underwater channel into improving and better understanding the operation of a decision feedback equalizer. This thesis examines how to use physical models to improve the reliability and reduce the computational complexity of the decision feedback equalizer. The specific topics covered by this work are: how to handle channel estimation errors for the time varying channel, how to use angular constraints imposed by the environment into an array receiver, what happens when there is a mismatch between the true channel order and the estimated channel order, and why there is a performance difference between the direct adaptation and channel estimation based methods for computing the equalizer coefficients. For each of these topics, algorithms are provided that help create a more robust equalizer with lower computational complexity for the underwater channel.
机译:水下无线通信正迅速成为海洋科学,国防和国土安全应用的必要条件。声学仍然是在海洋中完成远程通讯的唯一实用手段。声学通信信道充满困难,包括有限的可用带宽,长的延迟扩展,时变和多普勒扩展。这些困难降低了通信系统的可靠性,并使高数据速率通信具有挑战性。自适应决策反馈均衡是补偿水下声通道引入的失真的常用方法。迄今为止,已经进行了有限的工作来将水下通道的物理原理引入到改善和更好地理解判决反馈均衡器的操作中。本文研究了如何使用物理模型来提高决策反馈均衡器的可靠性并降低其计算复杂度。这项工作涉及的特定主题是:如何处理时变信道的信道估计误差,如何使用环境对阵列接收器施加的角度约束,当真实信道阶数与估计的信道之间不匹配时会发生什么?信道阶数,以及为什么直接自适应和基于信道估计的均衡器系数计算方法之间存在性能差异。对于这些主题中的每一个,提供的算法可帮助创建更强大的均衡器,并降低水下通道的计算复杂度。

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