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Transient Stability Analysis of the IEEE 14-Bus Test System Using Dynamic Computation for Power Systems (DCPS)

机译:电力系统(DCPS)动态计算的IEEE 14总线测试系统的暂态稳定性分析

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Transient Stability Analysis (TSA) is a major analysis in the operation of power systems, due to the increasing stress on power system networks. One of the main goals of this analysis is to gather critical information, such as critical clearing time (tCCT) of the circuit breakers for faults in the system. tCCT is defined as the maximum time between the fault initiation and its clearing, such that the power system is transiently stable. This paper presents a transient stability analysis of the IEEE 14 bus test system using Dynamic Computation for Power Systems (DCPS) software package. This C++ based software package has the ability to handle systems up to 1000 buses and 250 generators, providing an alternative to expensive commercial software packages. To analyze the effect of the distance of the fault location and critical clearing time on the system stability, a three-phase fault has been applied at five different locations in the system. The stability of the system has been observed based on the simulation graphs of terminal voltage, machine's rotor angle, machine's speed and output electrical power. The simulation results showed that tCCT decreases as the fault location becomes closer to the main generator.
机译:由于对电力系统网络的压力越来越大,暂态稳定分析(TSA)是电力系统运行中的一项主要分析。该分析的主要目标之一是收集关键信息,例如断路器中系统故障的关键清除时间(tCCT)。 tCCT定义为故障开始至清除之间的最长时间,以使电源系统瞬态稳定。本文介绍了使用电力系统动态计算(DCPS)软件包的IEEE 14总线测试系统的瞬态稳定性分析。这个基于C ++的软件包能够处理多达1000条总线和250个发电机的系统,从而为昂贵的商业软件包提供了替代方案。为了分析故障位置的距离和关键清除时间对系统稳定性的影响,已在系统的五个不同位置应用了三相故障。根据端子电压,机器的转子角,机器的速度和输出电功率的仿真图观察了系统的稳定性。仿真结果表明,随着故障位置越来越接近主发电机,tCCT减小。

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