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Distributed Multi-Agent-Based Protection Scheme for Transient Stability Enhancement in Power Systems

机译:基于分布式多Agent的电力系统暂态稳定保护方案

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摘要

This paper presents a new distributed agent-based scheme to enhance the transient stability of power systems by maintaining phase angle cohesiveness of interconnected generators through proper relay coordination with critical clearing time (CCT) information. In this distributed multi-agent infrastructure, intelligent agents represent various physical device models to provide dynamic information and energy flow among different physical processes of power systems. The agents can communicate with each other in a distributed manner with a final aim to control circuit breakers (CBs) with CCT information as this is the key issue for maintaining and enhancing the transient stability of power systems. The performance of the proposed scheme is evaluated on a standard IEEE 39-bus New England benchmark system under different large disturbances such as three-phase short-circuit faults and changes in loads within the systems. From the simulation results, it is found that the proposed scheme significantly enhances the transient stability of power systems as compared to a conventional scheme of static CB operation.
机译:本文提出了一种新的基于分布式智能体的方案,该方案通过在临界清除时间(CCT)信息下进行适当的继电器协调来维持互连发电机的相角内聚力,从而增强电力系统的暂态稳定性。在这种分布式多主体基础结构中,智能主体代表各种物理设备模型,以在电力系统的不同物理过程之间提供动态信息和能量流。这些代理可以以分布式方式相互通信,最终目的是利用CCT信息来控制断路器(CB),因为这是维持和增强电力系统瞬态稳定性的关键问题。在标准的IEEE 39总线新英格兰基准系统上,在诸如三相短路故障和系统内负载变化等不同的大干扰下,评估了该方案的性能。从仿真结果可以发现,与传统的静态CB操作方案相比,该方案显着提高了电力系统的暂态稳定性。

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