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风力发电测试数据采集数字低通滤波器设计及其实现
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作者 康尔良 贾丽 李小科 《防爆电机》 2010年第2期23-26,共4页
为提高风力发电机参数测定的精度,减小空载、负载、堵转试验等电机试验采集数据的误差,削弱测试电路中干扰对采集数据的影响,基于VB与Matlab混合编程设计了可满足有源滤波器性能要求的FIR数字低通滤波器,并以空载试验为例,分析了其滤波... 为提高风力发电机参数测定的精度,减小空载、负载、堵转试验等电机试验采集数据的误差,削弱测试电路中干扰对采集数据的影响,基于VB与Matlab混合编程设计了可满足有源滤波器性能要求的FIR数字低通滤波器,并以空载试验为例,分析了其滤波特性,实现了测试系统数据采集环节的优化。 展开更多
关键词 风力发电测试 FIR数字低通滤波器 VB与MATLAB混合编程
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Test Facility for Low Potential Pumped Storage Power Plants and Hydrokinetic Turbines
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作者 Dominik Surek 《Journal of Energy and Power Engineering》 2013年第11期2037-2044,共8页
The electric energy which is generated by wind power plants depends on the wind speed and exceeds with strong permissible wind speed the electric energy requirements of the country. In order not to reduce this electri... The electric energy which is generated by wind power plants depends on the wind speed and exceeds with strong permissible wind speed the electric energy requirements of the country. In order not to reduce this electrical energy, it must be stored. The sensible energy storage is currently the pumped storage power plants. As the mountain ranges for conventional pumped storage power plants with drop heights of H 〉 600 m are strictly limited, the development of low potential pumped storage power plants has begun. Increasing the capacity of pumped storage power plants with regard to the wind power plants is urgently needed. In this paper, it is shown using the example of an unneeded port facility, how a port facility can be used after low conversion as a test facility for low potential pumped storage power plants and at the same time for the testing of hydro-kinetic turbines. This type of pump storage power plants does not save the energy due to large drop heights, but primarily due to the large volume flow of water. 展开更多
关键词 Energy storage pumped storage power plant wind energy photovoltaic.
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Parameter Test and Analysis for Dynamic Compensation Devices in Wind Power Farms
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作者 Bai Runqing Qin Rui Zhi Yong Zhou Xichao Yang Yong 《Electricity》 2012年第4期20-24,共5页
The dynamic reactive power compensation equipment in Jiuquan Wind Power Base of above 10 GW consists of three different types of compensation devices, including: static var generator (SVG), thyristor controlled com... The dynamic reactive power compensation equipment in Jiuquan Wind Power Base of above 10 GW consists of three different types of compensation devices, including: static var generator (SVG), thyristor controlled compensator (TGR) and magnetically controlled reactor (MGR). The lack of experimental verification of performance is not conducive to voltage/var management or full utilization of device capaci- ties. In order to solve the above problems, the compensation device performance test was performed. The test items and procedures were selected based on related national standards with the consideration for different grid structures and wind farm operation modes. The testing contents included dynamic regulating range, active power loss, dynamic response time, and harmonic voltage level. Three types of compensation devices installed in different wind farms, namely SVG, TCR and MCR, were chosen and tested. The performances were compared and analyzed according to the field test results. 展开更多
关键词 wind power farm reactive power compensation parameter test
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