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Dynamic Modeling of Power Systems Experiencing Faults in Transmission/Distribution Networks

机译:输配电网故障的电力系统动态建模

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In this paper we address some shortcomings in existing nonlinear dynamic models of power system experiencing symmetrical and unsymmetrical faults in their transmission/distribution networks. The shortcomings relate to: 1) approximations relating to stator dynamics, internal voltage of the positive sequence network and the dynamics of the negative and zero sequence networks, and 2) existing models are time -variant, which may not be suitable for system studies such as stability and fault detection studies that require time invariant model. The approximations outlined in 1) adversely affect the modeling accuracy, especially that of the system response during the period immediately after the occurrence of faults. We present in this paper a full fault-dependent time-invariant dynamical model of power systems experiencing symmetrical and unsymmetrical faults in their transmission/distribution networks and verify it through simulation studies mimicking real life scenarios. IEEE 30 bus power system is considered as the study case. The simulation results are compared to Matlab's “SimPower” and PSCAD/EMTDC software packages.
机译:在本文中,我们解决了现有的电力系统非线性动态模型在其输配电网络中出现对称和非对称故障的缺点。缺点涉及:1)与定子动力学,正序网络的内部电压以及负序和零序网络的动力学有关的近似值,以及2)现有模型是时变的,可能不适合进行系统研究,例如作为需要时不变模型的稳定性和故障检测研究。 1)中概述的近似值会对建模精度产生不利影响,尤其是在故障刚发生后的一段时间内系统响应的精度。我们在本文中提出了一个完全故障相关的时变动力学模型,该模型在电力系统的传输/配电网络中遇到对称和非对称故障,并通过模拟现实生活场景的仿真研究对其进行了验证。以IEEE 30总线电源系统为研究案例。仿真结果与Matlab的“ SimPower”和PSCAD / EMTDC软件包进行了比较。

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