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Modeling and distributed gain scheduling strategy for load frequency control in smart grids with communication topology changes

机译:通信拓扑变化的智能电网负荷频率控制建模与分布式增益调度策略

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摘要

In this paper, we investigate the modeling and distributed control problems for the load frequency control (LFC) in a smart grid. In contrast with existing works, we consider more practical and real scenarios, where the communication topology of the smart grid changes because of either link failures or packet losses. These topology changes are modeled as a time-varying communication topology matrix. By using this matrix, a new closed-loop power system model is proposed to integrate the communication topology changes into the dynamics of a physical power system. The globally asymptotical stability of this closed-loop power system is analyzed. A distributed gain scheduling LFC strategy is proposed to compensate for the potential degradation of dynamic performance (mean square errors of state vectors) of the power system under communication topology changes. In comparison to conventional centralized control approaches, the proposed method can improve the robustness of the smart grid to the variation of the communication network as well as to reduce computation load. Simulation results show that the proposed distributed gain scheduling approach is capable to improve the robustness of the smart grid to communication topology changes.
机译:在本文中,我们研究了智能电网中的负载频率控制(LFC)的建模和分布式控制问题。与现有工作相比,我们考虑更实际和实际的情况,其中智能电网的通信拓扑会由于链路故障或数据包丢失而发生变化。这些拓扑更改被建模为时变通信拓扑矩阵。通过使用该矩阵,提出了一种新的闭环电力系统模型,以将通信拓扑变化集成到物理电力系统的动力学中。分析了该闭环电源系统的全局渐近稳定性。提出了一种分布式增益调度LFC策略,以补偿通信拓扑变化时电力系统动态性能的潜在下降(状态向量的均方误差)。与传统的集中控制方法相比,该方法可以提高智能电网对通信网络变化的鲁棒性,并减少计算量。仿真结果表明,所提出的分布式增益调度方法能够提高智能电网对通信拓扑变化的鲁棒性。

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