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Quantized State Feedback Stabilization with Signal-to-Noise Ratio Constraints

机译:用信噪比约束量化状态反馈稳定

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This paper deals with the problem of state feedback stabilization for single-input discrete-time systems over a communication channel, where both logarithmic quantization error and white noise are included. The logarithmic quantizer is characterized by a received signal-to-error ratio (R-SER) model and the white noise is modelled by additive white Gaussian noise (AWGN) channel where a signal-to-noise constraint is imposed. The desired control law is aimed to stabilize the system in the presence of quantized error and to satisfy some pre-specified power constraint, simultaneously. A solvability condition is derived in terms of Mahler measure of the plant and the desired feedback controller is obtained through solving an algebraic Riccati equation. An example is included to illustrate the current results.
机译:本文涉及通信信道上的单输入离散时间系统的状态反馈稳定问题,包括对数量化误差和白噪声。对数量子化器的特征在于接收到的信号 - 误差比(R-SER)模型,并且白噪声由添加的白色高斯噪声(AWGN)信道建模,其中施加信噪比。期望的控制定律旨在稳定在量化误差存在下的系统,并同时满足一些预先指定的功率约束。在植物的Mahler测量方面得出的可溶力条件,并且通过求解代数Riccati方程来获得所需的反馈控制器。包括一个示例以说明当前结果。

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