配电网风电机组分布式电压调节多智能体系统

H. Fakham, Amir Ahmidi, F. Colas, X. Guillaud
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引用次数: 45

摘要

目前,对于接入配电网的风力发电机,电压调节系统是集中式的。为了使这些分布式发电机的最佳集成,电压调节系统也必须是分布式的。本文提出了一种基于多智能体系统技术的分散电压调节方法。每个agent具有局部多目标优化函数,控制其风力发电母线上的电压,并参与中导母线的电压调节。这个表示所有总线的电压变化。所有的代理都在一起协调,协调是合作的。为了管理这种协调,开发了不同的交互协议。为了测试这种分散策略,执行了一个实验平台。多智能体系统可以在仿真系统和网络通信相结合的实时环境中运行。给出了一些实验结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Multi-agent system for distributed voltage regulation of wind generators connected to distribution network
Currently, for wind generators connected to distribution network, voltage regulation systems are centralized. For a best integration of these distributed generators, the voltage regulation system must also be distributed. In this paper, a decentralization of voltage regulation using multi-agent system technique is proposed. Each agent has a local multi-objective optimization function and controls the voltage at its wind generator bus and participates in voltage regulation of pilot bus. This one represents the voltage variations in all buses. All agents are coordinating together and the coordination is cooperative. To manage this coordination, different interaction protocols are developed. To test this decentralized strategy, an experimental platform is performed. Multi-agent system can operate in a realtime environment that combines simulation system and network communication. Some experimental results are presented.
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