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Power System Stabilizers Design for Interconnected Power Systems

机译:互连电源系统的电源系统稳定器设计

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摘要

This paper proposes a method of designing fixed parameter decentralized power system stabilizers (PSS) for interconnected multi-machine power systems. Conventional design technique using a single machine infinite bus approximation involves the frequency response estimation called the GEP(s) between the AVR input and the resultant electrical torque. This requires the knowledge of equivalent external reactance and infinite bus voltage or their estimated values at each machine. Other design techniques using P-Vr characteristics or residues are based on complete system information. In the proposed method, information available at the high voltage bus of the step-up transformer is used to set up a modified Heffron-Phillip's model. With this model it is possible to decide the structure of the PSS compensator and tune its parameters at each machine in the multi-machine environment, using only those signals that are available at the generating station. The efficacy of the proposed design technique has been evaluated on three of the most widely used test systems. The simulation results have shown that the performance of the proposed stabilizer is comparable to that which could be obtained by conventional design but without the need for the estimation and computation of external system parameters.
机译:本文提出了一种用于互连多机电力系统的固定参数分散式电力系统稳定器(PSS)的设计方法。使用单机无穷大总线逼近的常规设计技术涉及AVR输入和所得电转矩之间的频率响应估算,称为GEP。这需要了解等效的外部电抗和无限的母线电压或每台机器的估计值。使用P-Vr特性或残留物的其他设计技术都基于完整的系统信息。在提出的方法中,升压变压器的高压总线上可用的信息用于建立改进的Heffron-Phillip模型。使用此模型,可以仅使用发电站可用的那些信号来确定PSS补偿器的结构,并在多机环境中的每台机器上调整其参数。所提出的设计技术的功效已在三个最广泛使用的测试系统上进行了评估。仿真结果表明,所提出的稳定器的性能与传统设计所能达到的稳定器相当,而无需估计和计算外部系统参数。

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