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首页> 外文期刊>IEEE Transactions on Circuits and Systems. II >Adaptive recursive-least-squares and lattice transversal filters for continuous-time signal processing
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Adaptive recursive-least-squares and lattice transversal filters for continuous-time signal processing

机译:自适应递归最小二乘和点阵横向滤波器,用于连续时间信号处理

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摘要

The authors present lattice and transversal filters for adaptive recursive-least-squares (RLS) processing of continuous-time signals. They have the same structure as the discrete-time RLS adaptive lattice and transversal configurations, namely, a lattice cascade and a tapped-delay-line, respectively, but with continuously adjustable parameters that are updated by propagating a set of coupled differential equations. While the discrete-time scheme involves a fundamental unit of time (viz. the sampling period of the signal) that determines both the duration of the delay and the rate of gain-updating, the new continuous-time scheme involves a delay of arbitrary duration and continuously varying gains. It turns out that the conceptual and computational complexity of the continuous-time filters is less than for their discrete-time counterparts.
机译:作者介绍了用于连续时间信号的自适应递归最小二乘(RLS)处理的点阵滤波器和横向滤波器。它们具有与离散时间RLS自适应晶格和横向配置相同的结构,即分别为晶格级联和抽头延迟线,但具有通过传播一组耦合的微分方程而更新的连续可调参数。离散时间方案涉及确定延迟时间和增益更新速率的基本时间单位(即信号的采样周期),而新的连续时间方案涉及任意时间的延迟并不断变化收益。事实证明,连续时间滤波器的概念和计算复杂度小于离散时间滤波器。

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