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New methods for computing power system dynamic response forreal-time transient stability prediction

机译:电力系统动态响应实时暂态稳定预测的新方法

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摘要

Using new systems capable of making synchronized phasor measurements, the real-time stability assessment of a transient event in power systems has become an important area of investigation. Using these phasor measurements as input conditions for computing a relatively good, simplified dynamic model can yield accurate and real-time transient stability prediction in a central location equipped with high-speed computers. In an effort to reduce the computing time for integrating the differential/algebraic equation (DAE) model of postfault power system dynamics for prediction use, this paper presents a faster implicitly decoupled PQ integration technique. Two piecewise dynamic equivalents are also proposed, i.e., piecewise constant current load equivalent and piecewise constant transfer admittance equivalent. These equivalents can eliminate the algebraic equations by approximating the load flow solution piecewisely such that only internal generator buses are preserved, while approximately retaining the characteristics of the nonlinear loads. The proposed techniques have been tested on two sample power systems with promising simulation results
机译:使用能够进行同步相量测量的新系统,电力系统瞬态事件的实时稳定性评估已成为研究的重要领域。将这些相量测量值用作输入条件,以计算相对较好的简化动态模型可以在配备有高速计算机的中央位置提供准确且实时的瞬态稳定性预测。为了减少集成故障后电力系统动力学的微分/代数方程(DAE)模型以供预测使用的计算时间,本文提出了一种更快的隐式解耦PQ集成技术。还提出了两个分段动态等效项,即分段恒定电流负载等效项和分段恒定传输导纳等效项。这些等效项可以通过逐段地近似潮流解决方案来消除代数方程,从而仅保留内部发电机母线,同时近似保留非线性负载的特性。所提出的技术已经在两个示例电力系统上进行了测试,并获得了令人满意的仿真结果

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