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Study of wind penetration and it's impacts in Kathmandu valley, a case study

机译:案例研究加德满都谷地的风渗透及其影响

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Integration of wind turbines may have significant impacts on power system operation. Generation of electricity from wind power has received considerable attention. Induction machines are the one which are widely used as generators in wind power based generations. This paper analyzes the impact of integrating wind generation on the voltage collapse and loading parameters of the network of Kathmandu valley, Nepal. These requirements are simulated and compared for the study cases with and without wind generation impacts included into the study for the year 2008/09. The voltage stability for the Kathmandu valley network is determined by its corresponding notch curve (PV curve), obtained from Continuity Power Flow (CPF). In this paper, the effect of wind power penetration on the total system active loss and voltage collapse with corresponding loading is investigated by increasing gradually a rate of wind power penetration. The simulation analysis was established on Kathmandu valley network by PSAT/MATLAB, which gives access to an extensive library of grid components and relevant wind turbine model. This analysis would be useful for power planners to assess the future impacts of integrating wind energy capacity in the grids and design appropriate strategies for capacity expansion planning.
机译:风力涡轮机的集成可能会对电力系统的运行产生重大影响。风力发电已经引起了广泛的关注。感应电机是在风力发电中被广泛用作发电机的一种。本文分析了风力发电对尼泊尔加德满都谷地网络的电压崩溃和负荷参数的影响。模拟并比较了2008/09年研究中包含和不包含风力发电影响的研究案例的这些要求。加德满都谷地网络的电压稳定性由其相应的陷波曲线(PV曲线)确定,该陷波曲线是从连续功率流(CPF)获得的。本文通过逐步增加风电渗透率来研究风电渗透对整个系统的有功损耗和相应负载下的电压崩溃的影响。通过PSAT / MATLAB在加德满都谷地网络上建立了仿真分析,可以访问大量的电网组件和相关的风机模型库。该分析对于电力规划人员评估风电并网发电的未来影响以及设计适当的扩容计划策略很有用。

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