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首页> 外文期刊>Circuits, systems, and signal processing >Improved Criterion for Robust Stability of Discrete-Time State-Delayed Systems with Quantization/Overflow Nonlinearities
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Improved Criterion for Robust Stability of Discrete-Time State-Delayed Systems with Quantization/Overflow Nonlinearities

机译:具有量化/溢出非线性的离散状态时滞系统鲁棒稳定性的改进判据

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摘要

This paper deals with the problem of global asymptotic stability of discrete-time state-delayed digital filters under norm-bounded parameter uncertainties and the composite effects of quantization and overflow nonlinearities. A novel approach to identify the composite nonlinearities, in the underlying uncertain system, which effectively operates only in quantization region, is adopted. Utilizing the maximum normalized quantization error of quantizer, the maximum representable number for a given wordlength and an estimated upper bound of parameter uncertainties, along with system parameters, a new global asymptotic stability criterion is established. The criterion is compared with the existing criterion. The usefulness of the presented result is demonstrated with the help of an example.
机译:本文研究了在范数有界的参数不确定性下离散时间状态延迟数字滤波器的全局渐近稳定性以及量化和溢出非线性的复合效应的问题。采用一种在潜在不确定系统中识别复合非线性的新颖方法,该方法仅在量化区域内有效。利用量化器的最大归一化量化误差,给定字长的最大可表示数和参数不确定性的估计上限,以及系统参数,建立了新的全局渐近稳定性准则。将该标准与现有标准进行比较。借助示例演示了提出的结果的有用性。

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