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Novel Procedure for Characterizing Nonlinear Systems with Memory: 2017 Update

机译:表征带有存储器的非线性系统的新方法:2017年更新

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The present article discusses novel improvements in nonlinear signal processing made by the prime algorithm developer, Dr. Albert H. Nuttall and co-authors, a consortium of research scientists from the Naval Undersea Warfare Center Division, Newport, RI. The algorithm, called the Nuttall-Wiener-Volterra or 'NWV' algorithm is named for its principal contributors. The NWV algorithm significantly reduces the computational workload for characterizing nonlinear systems with memory. Following this formulation, two measurement waveforms are required in order to characterize a specified nonlinear system under consideration: (1) an excitation input waveform, x(t) (the transmitted signal); and, (2) a response output waveform, z(t) (the received signal). Given these two measurement waveforms for a given propagation channel, a 'kernel' or 'channel response', h= [h_0,h_1,h_2,h_3] between the two measurement points, is computed via a least squares approach that optimizes modeled kernel values by performing a best fit between measured response z(t) and a modeled response y(t). New techniques significantly diminish the exponential growth of the number of computed kernel coefficients at second and third order in order to combat and reasonably alleviate the Curse of Dimensionality.
机译:本文讨论了主要算法开发人员Albert H. Nuttall博士和共同作者(来自美国新罕布什尔州纽波特的海军海底作战中心分部的研究科学家组成的联盟)在非线性信号处理方面的新颖改进。该算法称为Nuttall-Wiener-Volterra或“ NWV”算法,以其主要贡献者而命名。 NWV算法大大减少了表征带有存储器的非线性系统的计算量。按照这种公式,需要两个测量波形以表征所考虑的特定非线性系统:(1)激励输入波形x(t)(发射信号); (2)响应输出波形z(t)(接收信号)。给定传播通道的这两个测量波形,通过最小二乘法计算两个测量点之间的“内核”或“通道响应” h = [h_0,h_1,h_2,h_3],可优化建模内核值通过在测得的响应z(t)和建模的响应y(t)之间执行最佳拟合。新技术极大地减少了二阶和三阶计算内核系数数量的指数增长,以应对并合理缓解维度诅咒。

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