Sun Yifan, Li Lulu, Ho Daniel W C
IEEE Trans Cybern. 2023 Jan;53(1):184-196. doi: 10.1109/TCYB.2021.3090999. Epub 2022 Dec 23.
This article investigates the quantized control issue for synchronizing a networked nonlinear system. Due to limited energy and channel resources, the event-triggered control (ETC) method and input quantization are simultaneously taken into account in this article. First, a dynamic quantizer, which discretely adjusts its parameters online and possesses a finite quantization range, is introduced to achieve exact synchronization, rather than quasisynchronization. Next, a new distributed Zeno-free ETC strategy is proposed based on the dynamic quantizer. Then, two different situations, that is, the quantizer is designed with/without the network topology information, are, respectively, discussed. Synchronization criteria are, respectively, derived under such two circumstances by using the Lyapunov method. Finally, numerical examples are provided to show the effectiveness of the theoretical results.
本文研究了网络化非线性系统同步的量化控制问题。由于能量和信道资源有限,本文同时考虑了事件触发控制(ETC)方法和输入量化。首先,引入一种动态量化器,它能在线离散地调整其参数且具有有限的量化范围,以实现精确同步而非准同步。其次,基于该动态量化器提出了一种新的分布式无芝诺事件触发控制策略。然后,分别讨论了两种不同情况,即量化器设计时有无网络拓扑信息。利用李雅普诺夫方法在这两种情况下分别推导了同步准则。最后,给出数值例子以说明理论结果的有效性。