Minimization of output fluctuations of hybrid power system by using modified pitch controller

M. Sheikh, D. Datta, M. Ashrafi
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引用次数: 2

Abstract

The rapid depletion of fossil fuel resources and environmental concern has given awareness on generation of renewable energy resources. Among the various renewable resources, wind energy seems to be promising solution to provide reliable power supply with improved system efficiency. As wind turbine output is proportional to the cube of wind speed, the wind turbine generator output fluctuates due to wind speed variation. This study investigates the influences of a new pitch controller & governor control system model on frequency of power system, when variable load has been considered. It is observed that system frequency can be maintained in acceptable level by using newly designed pitch controller & governor control system when several interconnected synchronous generators (SGs) are operated in different governor control modes with high wind power penetration, when the total capacity of SGs is considered as 100 MVA. Real wind speed data have been considered for this study. PSCAD/EMTDC software is used for simulation analyses.
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利用改进螺距控制器实现混合动力系统输出波动最小化
化石燃料资源的迅速枯竭和对环境的关注使人们认识到可再生能源的产生。在各种可再生能源中,风能似乎是提供可靠的电力供应和提高系统效率的有希望的解决方案。由于风力发电机组的输出与风速的立方成正比,因此风力发电机组的输出会随着风速的变化而波动。本文研究了在考虑变负荷的情况下,一种新的螺距控制器&调速器控制系统模型对电力系统频率的影响。研究发现,当并联同步发电机总容量为100 MVA时,采用新设计的螺距控制器和调速器控制系统,在不同的调速器控制方式下运行时,系统频率可以保持在可接受的水平。本研究考虑了实际风速数据。采用PSCAD/EMTDC软件进行仿真分析。
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