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Distributed power control for DERs based on networked multiagent systems with communication delays

机译:基于具有通信延迟的网络化多主体系统的DER分布式电源控制

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This paper develops a distributed secondary cooperative scheme for the current-controlled PWM inverters (CC-PWMIs) based on networked multiagent systems that can guarantee the accurate power sharing among the distributed energy resource (DER) units in microgrids. With the assumption that the communication networks are local, time-varying, and with low bandwidth, two distributed secondary controllers are designed such that all DERs in the microgrid can share their active and reactive powers accurately on the conditions of both fixed and switching topologies with time-varying communication delays. Moreover, delay-dependent sufficient conditions are obtained by using the Lyapunov-Krasovskii stable analysis method. The proposed controllers, allowing each DER unit to receive the current and active/reactive load information intermittently from its neighboring DERs, are then fully distributed. The effectiveness of the proposed control methodology is verified by the simulation of a low-voltage microgrid test system in the MATLAB/SimPowerSystems Toolbox. (C) 2015 Elsevier B.V. All rights reserved.
机译:本文基于网络化的多智能体系统,开发了一种用于电流控制PWM逆变器(CC-PWMI)的分布式二次协作方案,该方案可以保证微电网中分布式能源(DER)单元之间的准确功率共享。假设通信网络是本地的,时变的并且具有低带宽,则设计了两个分布式辅助控制器,以便微电网中的所有DER可以在固定拓扑和交换拓扑的条件下准确共享其有功功率和无功功率。随时间变化的通信延迟。此外,通过使用Lyapunov-Krasovskii稳定分析方法可以获得依赖于延迟的充分条件。然后,建议的控制器将完全分发,该控制器允许每个DER单元间歇地从其相邻DER接收当前和有功/无功负载信息。通过在MATLAB / SimPowerSystems工具箱中对低压微电网测试系统进行仿真,验证了所提出的控制方法的有效性。 (C)2015 Elsevier B.V.保留所有权利。

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