Impact of wind farms on contingent power system voltage stability

M. El-Saadawi, S. Kaddah, M. Osman, M. Abdel-Wahab
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引用次数: 15

Abstract

With the global trend towards deregulation in the power system industry, the volume and the complexity of the contingency analysis results in the daily operation and system studies have been increasing. This paper discusses the impact of wind turbine generating units (WTGUs) on power system voltage stability. A probabilistic voltage stability algorithm is developed via power flow analysis where these units are modeled as P-Q bus(es) by detecting the collapse point on the Q-V curves. The developed algorithm also facilitates the computation of both the real and reactive power output of the fixed speed pitch regulated wind turbine at a specific site, wind turbine characteristics, wind speed and terminal voltage. The probabilistic nature of wind is considered by introducing the expected voltage stability margin as an index that combines both of the voltage stability and the wind distribution in one index. The proposed algorithm is implemented and applied on the IEEE 26-bus, voltage stability margin (VSM), and expected voltage stability margin (EVSM) are calculated at each wind speed. The accumulation of the EVSM over a specific period can be considered as the system voltage stability margin which is a single value that can be compared with the voltage stability margin of the all-conventional power system. Finally a contingency analysis for wind power through severe outage cases relevant to conventional power system is investigated.
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风电场对应急电力系统电压稳定性的影响
随着全球电力系统行业放松管制的趋势,在日常运行和系统研究中,应急分析结果的数量和复杂性不断增加。本文讨论了风力发电机组对电力系统电压稳定的影响。通过潮流分析开发了一种概率电压稳定算法,其中通过检测Q-V曲线上的崩溃点,将这些单元建模为P-Q总线。该算法还可以方便地计算固定转速螺距调节风力机在特定场址的实功率和无功输出、风力机特性、风速和端电压。考虑风的概率特性,引入电压稳定裕度作为电压稳定和风分布的综合指标。该算法在IEEE 26总线上实现并应用,计算了各风速下的电压稳定裕度(VSM)和期望电压稳定裕度(EVSM)。EVSM在一定时期内的累积量可以看作是系统电压稳定裕度,它是一个单一的值,可以与全常规电力系统的电压稳定裕度进行比较。最后,通过与常规电力系统相关的严重停电案例,对风电进行了应急分析。
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