Stochastic Distributed Pinning Control for Co-Multi-Inverter Networks With a Virtual Leader

Stochastic Distributed Pinning Control for Co-Multi-Inverter Networks With a Virtual Leader
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具有虚拟领导者的联合多逆变器网络的随机分布式钉扎控制

DOI:
10.1109/tcsii.2019.2950764
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发表时间:
2020-10
影响因子:
4.4
通讯作者:
Liu Guo-Ping
Liu Guo-Ping
中科院分区:
工程技术2区
文献类型:
--
作者:
Lai Jingang;Lu Xiaoqing;Monti Antonello;Liu Guo-Ping

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本文提出了一种随机分布钉扎控制方案,用于受加性噪声和对称时滞扰动影响的共多逆变器(CMI)网络的电压调节。在实际的CMI网络中,多个逆变器之间的信息交换会受到通信噪声的干扰和通信时延的影响。为此,建议的分布式钉扎控制方案可以通过稀疏的通信网络,考虑到时间延迟和噪声干扰的均方收敛的虚拟领导者的逆变器的终端电压同步到其参考值。利用随机分析工具和代数图论,提出了一种适用于CMIs的分布式钉扎协议,并推导出了考虑噪声干扰时系统稳定的时滞有界性判据. CMI系统的仿真结果表明,所提出的控制协议的有效性。
This brief develops a stochastic distributed pinning control scheme for the voltage regulation of co-multi-inverter (CMI) networks subject to additive noise and symmetric time-delay disturbances. In actual CMI networks, the information exchange among multiple and cooperative inverters may be disturbed by communication noises and affected by communication time delays. Towards that end, the proposed distributed pinning control scheme can synchronize the terminal voltages of inverters to their reference value by a virtual leader through sparse communication networks considering time delays and noise disturbances in mean square convergence. By means of the stochastic analysis tools and algebraic graph theory, distributed pinning protocols are developed to be employed for CMIs, in which manner the criteria for the delay boundedness considering noise disturbances to maintain the system stability are derived. Simulation results on a CMI system are provided to show the effectiveness of the proposed control protocols.
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