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首页> 外文期刊>IEEE Transactions on Automatic Control >Steady-state optimal discrete-time control of first-order systemswith actuator noise variance linearly related to actuator signalvariance
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Steady-state optimal discrete-time control of first-order systemswith actuator noise variance linearly related to actuator signalvariance

机译:一阶系统的稳态最优离散时间控制,其执行器噪声方差与执行器信号方差线性相关

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摘要

In this paper, the steady-state discrete-time optimal LQG control problem is considered when the noise variance of an actuator depends linearly on the variance of the actuator signal. A first-order system is analyzed in the case of noise-free and noisy output measurements. In the standard LQG problem the actuator noise variance is assumed to be known and constant before the design of the feedback gain. Consequently, the standard LQG design can lead to the deterioration of the system performance in the considered case
机译:当执行器的噪声方差线性依赖于执行器信号的方差时,本文考虑了稳态离散时间最优LQG控制问题。在无噪声和有噪声的输出测量情况下分析一阶系统。在标准的LQG问题中,在设计反馈增益之前,假定执行器噪声方差是已知的且恒定。因此,在考虑的情况下,标准的LQG设计可能会导致系统性能下降。

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