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Dynamic performance of wind-driven self-excited reluctance generator under varying wind speed and load

机译:风力和励磁发电机在变化的风速和负荷下的动态性能

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This paper presents the dynamic performance of a wind-driven self-excited reluctance generator (WDSERG) to obtain a desired output voltage under a stochastic wind speed variation and changing load. The dynamic model of SERG is developed and utilised to simulate the WDSERG in the MATLAB-Simulink environment. A stochastic wind speed profile is generated using weibull distribution. The excitation capacitance required to maintain the output voltage at a desired level is computed for each wind speed and load. The obtained capacitance value is utilised to provide the required excitation for the self-excited reluctance generator (SERG). Different scenarios of load conditions are considered and an optimal capacitance value is determined and selected for each load cases. The results show that in spite of the variation in wind speed or load, a desired output voltage level within predetermined limits is obtained. This illustrates that variable excitation capacitance can be utilised to follow the wind speed in order to produce a desired output voltage level under any given operating conditions of wind speed and terminal load, within the steady state limits of the SERG. Therefore, this can offer an effective and low-cost solution for output voltage control of WDSERG, particularly in remote locations.
机译:本文提出了一种风动力自激磁阻发电机(WDSERG)的动态性能,以在随机风速变化和负载变化的情况下获得所需的输出电压。开发了SERG的动态模型,并将其用于在MATLAB-Simulink环境中模拟WDSERG。使用魏布尔分布生成随机风速分布。对于每种风速和负载,计算将输出电压保持在所需水平所需的激励电容。所获得的电容值用于为自激磁阻发生器(SERG)提供所需的激励。考虑了负载条件的不同情况,并针对每种负载情况确定并选择了最佳电容值。结果表明,尽管风速或负载有所变化,但仍可在预定范围内获得所需的输出电压水平。这说明在SERG的稳态范围内,可变的激励电容可用于跟随风速,以便在风速和终端负载的任何给定操作条件下产生所需的输出电压水平。因此,这可以为WDSERG的输出电压控制提供有效且低成本的解决方案,尤其是在偏远地区。

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