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Assessment of voltage sag in distribution system regarding the uncertainty of wind based distributed generation

机译:基于风的分布式发电不确定性的配电系统电压暂降评估

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This paper presents a new assessment of voltage sag due to faults in distribution system connected with wind based distributed generation (DG) in which some uncertain factors of this DG technology are considered. Voltage sag characteristics depend on the system's short-circuit power that includes the contribution of DG power injection when faults occur. The output power produced by wind based DGs is a function of the wind speed that is stochastic in nature. By using the probabilistic modeling of wind speed at the DG installation site, the uncertainty of wind regime is built into the problem of stochastic prediction of voltage sag in distribution system with wind energy resources connected. The paper assesses voltage sag performance in IEEE 34 Nodes Test Feeder. DG connected network modeling and fault analysis are done using PSS/ADEPT 5.0. Voltage sag characteristics and frequency are also determined in relation to wind speed for different scenarios of DG sizing and placement, types of wind power generation and the impact of the system source capacity of the distribution system of interest.
机译:本文提出了一种新的评估电压暂降的方法,该方法是与风电分布式发电(DG)相连的配电系统中的故障所致,其中考虑了该DG技术的一些不确定因素。电压骤降​​的特性取决于系统的短路功率,其中包括发生故障时DG功率注入的作用。基于风的DG产生的输出功率是自然风速的函数。通过使用DG安装现场的风速概率模型,将风电的不确定性纳入了连接风能资源的配电系统中电压暂降的随机预测问题。本文评估了IEEE 34 Nodes Test Feeder中的电压骤降性能。 DG连接的网络建模和故障分析是使用PSS / ADEPT 5.0完成的。对于DG尺寸和位置的不同情况,风力发电的类型以及目标配电系统的系统源容量的影响,还根据风速确定了电压骤降的特性和频率。

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