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Stochastic analysis and simulation of grid-connected wind energy conversion system

机译:并网风能转换系统的随机分析与仿真

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An increasing presence of renewable energy forms, due to environmental and socio-economic reasons, in the electric power industry necessitates an assessment of the impact of these sources, on a conventional electric utility. This assessment incorporates stochastic theory to investigate the security and stability of a wind energy conversion system (WECS) on an electrical utility to quantify the limits of such a system's operation. This paper presents a model that captures the uncertainties in the system load at the wind generator bus, a method that approximates the randomness experienced by the system. Future dynamic models in development will capture noise due to wind effects. A simple model of a grid-connected WECS is presented. An index of reliability is also determined known as the mean first passage time (MFPT), the time taken for the system to leave its stability region.
机译:由于环境和社会经济原因,可再生能源形式在电力工业中的存在日益增多,因此有必要评估这些能源对常规电力公司的影响。该评估结合了随机理论,以研究电力公司的风能转换系统(WECS)的安全性和稳定性,以量化此类系统运行的极限。本文提出了一个模型,该模型捕获了风力发电机母线系统负载的不确定性,该方法近似了系统所经历的随机性。未来开发中的动态模型将捕获由于风效应引起的噪声。提出了并网WECS的简单模型。可靠性指标也被确定为平均首次通过时间(MFPT),即系统离开其稳定区域所需的时间。

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