基于多智能体的分布式发电系统保护

Zeng Xiangjun, K. Li, W. L. Chan, Su Sheng
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引用次数: 56

摘要

由于管制的放松,在中低压电网中安装分布式发电机的分布式发电系统在配电系统中越来越受欢迎。在径向系统中开发的传统保护在协调和防止高阻抗故障(HIF)方面存在困难,有时可能会在DG系统中造成有害的跳闸。本文提出了一种基于分散多智能体的DG系统HIF检测、故障定位和减载保护方法。数字中继被设计成一个中继体,能够从其他中继体那里搜索信息,能够与其他中继体进行交互,能够自主协作地执行保护任务。提出了基于agent的保护方案。EMTP仿真结果表明,提出的基于agent的保护方案可以消除负载切换操作的影响,防止HIF、触电。研制出了继电器样机,目前正在进行样机在动态电力系统中的测试研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Multi-agents based protection for distributed generation systems
As a result of deregulation, distributed generation (DG) systems with distributed generators installed in the middle or low voltage networks become popular in distribution systems. Traditional protections developed in radial systems are difficult in coordination and in protecting against high impedance fault (HIF), sometimes it may cause nuisance tripping in the DG systems. A decentralized multi-agent based protection with capability of HIF detection, fault location and load shedding for the DG systems is proposed in the paper. Digital relay is designed as a relay agent which is capable of searching for information from other relay agents, interacting with other relay agents and performing tasks of protection with autonomy and cooperating. The agent based protection scheme is also presented. EMTP simulation results show that the proposed agent based protection scheme can remove the influence of load switching operations, protect against HIF, electric shock. The prototype of relay agent is developed, the research is now in progress on testing the prototype in dynamic power system.
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