Performance Analysis of Multichannel Lattice Equalization in Coherent Underwater Communications

J. Gomes, António Silva, S. Jesus
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引用次数: 2

Abstract

This work examines the numerical fixed-point performance of a new multichannel lattice RLS filtering algorithm using data from two underwater acoustic communication experiments. The algorithm may be an appealing choice for underwater equalization due to its robust numerical behavior and linear scaling of the computational complexity with filter order. Simple modifications to widely-used methods for carrier/timing synchronization and symbol slicing in transversal equalizers are proposed. Experimental results show that the algorithm is as accurate as the similarly array-based QR-RLS, tolerating word lengths as low as 16-20 bits with minor degradation relative to floating-point benchmarks. These features, coupled with a very modular and regular structure, are highly desirable in energy- efficient hardware or embedded implementations.
相干水下通信中多信道点阵均衡性能分析
本文利用两个水声通信实验的数据,研究了一种新的多通道点阵RLS滤波算法的数值定点性能。该算法具有鲁棒的数值特性,且计算复杂度随滤波器阶数呈线性变化,是水下均衡的理想选择。对横向均衡器中广泛使用的载波/定时同步和符号切片方法进行了简单的修改。实验结果表明,该算法与类似的基于阵列的QR-RLS一样精确,可以容忍低至16-20位的字长,相对于浮点基准的性能略有下降。这些特性,加上非常模块化和规则的结构,在节能硬件或嵌入式实现中是非常理想的。
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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