Cao Hongwei, Song Yongduan
IEEE Trans Neural Netw Learn Syst. 2023 Aug;34(8):5076-5085. doi: 10.1109/TNNLS.2021.3123946. Epub 2023 Aug 4.
Communication and computation resources are normally limited in remote/networked control systems, and thus, saving either of them could substantially contribute to cost reduction and life-span increasing as well as reliability enhancement for such systems. This article investigates the event-triggered control method to save both communication and computation resources for a class of uncertain nonlinear systems in the presence of actuator failures and full-state constraints. By introducing the triggering mechanisms for actuation updating and parameter adaptation, and with the aid of the unified constraining functions, a neuroadaptive and fault-tolerant event-triggered control scheme is developed with several salient features: 1) online computation and communication resources are substantially reduced due to the utilization of unsynchronized (uncorrelated) event-triggering pace for control updating and parameter adaptation; 2) systems with and without constraints can be addressed uniformly without involving feasibility conditions on virtual controllers; and 3) the output tracking error converges to a prescribed precision region in the presence of actuation faults and state constraints. Both theoretical analysis and numerical simulation verify the benefits and efficiency of the proposed method.
在远程/网络控制系统中,通信和计算资源通常是有限的,因此,节省其中任何一种资源都可以显著有助于降低成本、延长使用寿命以及提高此类系统的可靠性。本文研究了一种事件触发控制方法,用于在存在执行器故障和全状态约束的情况下,为一类不确定非线性系统节省通信和计算资源。通过引入用于驱动更新和参数自适应的触发机制,并借助统一的约束函数,开发了一种具有若干显著特征的神经自适应容错事件触发控制方案:1)由于在控制更新和参数自适应中使用了非同步(不相关)的事件触发节奏,在线计算和通信资源大幅减少;2)有约束和无约束的系统可以统一处理,而无需涉及虚拟控制器的可行性条件;3)在存在驱动故障和状态约束的情况下,输出跟踪误差收敛到规定的精度区域。理论分析和数值模拟都验证了所提方法的优点和有效性。