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Simulating voltage collapse dynamics for power systems with constant power load models

机译:模拟电力系统电压折叠动态,具有恒定功率负载模型

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Electromechanical Transients are studied using Transient Stability Simulators with differential-algebraic equation (DAE) models employing phasor network variables. While these simulators can follow the electromechanical transients (e.g., voltage and power swings) due to large disturbances with loads modeled as constant impedance, they may fail to converge under voltage collapse conditions for systems with constant power load models. This non-convergence has been attributed to a voltage collapse during the transient in the literature. This paper aims at addressing this non-convergence issue of the phasor based transient stability simulators using constant power load models. It presents a methodology for examining the voltage collapse trajectories by modeling constant power loads as voltage dependent impedance loads. Simulations on a two bus and a nine bus system for line switching disturbances show that the voltage collapse trajectories can be examined via the proposed voltage dependent impedance load model.
机译:使用具有采用Phasor网络变量的差分代数方程(DAE)模型的瞬态稳定性模拟器研究机电瞬变。虽然这些模拟器可以跟随机电瞬变(例如,电压和电源摇摆)由于具有恒定阻抗的负载的大扰动,但是它们可能无法在具有恒定功率负载模型的系统的电压崩溃条件下收敛。该非收敛性归因于文献中的瞬态期间的电压塌陷。本文旨在使用恒定功率负载模型来解决基于Phasor基于瞬态稳定性模拟器的这种非收敛性问题。它呈现了一种用于通过将恒定功率负载建模为电压依赖性阻抗负载来检查电压塌陷轨迹的方法。用于两台总线的模拟和线路切换干扰的九个总线系统,表明可以通过所提出的电压依赖性阻抗负荷模型检查电压塌陷轨迹。

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