Event-Triggered Stochastic Control via Constrained Quantization

Hikmet Yildiz, Yu Su, A. Khina, B. Hassibi
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引用次数: 3

Abstract

We consider a discrete-time linear quadratic Gaussian networked control setting where the (full information) observer and controller are separated by a fixed-rate noiseless channel. We study the event-triggered control setup in which the encoder may choose to either transmit a packet or remain silent. We recast this problem into that of fixed-rate quantization with an extra symbol that corresponds to the silence event. This way, controlling the average transmission rate is possible by constraining the minimal probability of the silence symbol. We supplement our theoretical framework with numerical simulations.
基于约束量化的事件触发随机控制
我们考虑了一个离散时间线性二次高斯网络控制设置,其中(全信息)观测器和控制器由固定速率的无噪声信道分开。我们研究了事件触发控制设置,其中编码器可以选择发送数据包或保持沉默。我们将这个问题转化为固定速率量化问题,并增加了一个与沉默事件对应的符号。这样,就可以通过约束静默符号的最小概率来控制平均传输速率。我们用数值模拟来补充我们的理论框架。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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