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Complex-Valued Signal Processing: The Proper Way to Deal With Impropriety

机译:复数值信号处理:正确处理不当行为的方法

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Complex-valued signals occur in many areas of science and engineering and are thus of fundamental interest. In the past, it has often been assumed, usually implicitly, that complex random signals are proper or circular. A proper complex random variable is uncorrelated with its complex conjugate, and a circular complex random variable has a probability distribution that is invariant under rotation in the complex plane. While these assumptions are convenient because they simplify computations, there are many cases where proper and circular random signals are very poor models of the underlying physics. When taking impropriety and noncircularity into account, the right type of processing can provide significant performance gains. There are two key ingredients in the statistical signal processing of complex-valued data: 1) utilizing the complete statistical characterization of complex-valued random signals; and 2) the optimization of real-valued cost functions with respect to complex parameters. In this overview article, we review the necessary tools, among which are widely linear transformations, augmented statistical descriptions, and Wirtinger calculus. We also present some selected recent developments in the field of complex-valued signal processing, addressing the topics of model selection, filtering, and source separation.
机译:复数值信号出现在科学和工程的许多领域,因此具有根本的意义。在过去,通常隐式地假设复杂的随机信号是适当的或循环的。适当的复数随机变量与其复共轭无关,并且圆形复数随机变量的概率分布在复数平面旋转时不变。尽管这些假设很方便,因为它们简化了计算,但在许多情况下,适当的和圆形的随机信号对于基础物理学而言是非常差的模型。考虑到不当性和非圆形性时,正确的处理类型可以显着提高性能。复数值数据的统计信号处理中有两个关键要素:1)利用复数值随机信号的完整统计特征; 2)关于复杂参数的实值成本函数的优化。在这篇概述文章中,我们回顾了必要的工具,其中包括广泛的线性变换,扩充的统计描述和Wirtinger演算。我们还介绍了复数值信号处理领域的一些最新进展,以解决模型选择,滤波和源分离的问题。

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