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1)  energy from wind
风力发电量
2)  wind power
风力发电
1.
Application of series-parallel energy storage system with super-capacitor in wind power generation;
串并联型超级电容器储能系统在风力发电中的应用
2.
The development and future of wind power generation of our country on ocean;
我国海上风力发电的发展与前景
3.
Cutting-in control of the variable speed constant frequency wind power generator based on internal model controller;
基于内模控制器的变速恒频风力发电并网控制方法
3)  wind power generation
风力发电
1.
Grasping Every New Opportunity,Developing the Wind Power Generation in Hubei;
抓住机遇研发湖北省的风力发电
2.
Voltage control of a rectification-type cage induction generator for wind power generation;
整流型鼠笼异步风力发电机的电压控制
3.
Feasibility of wind power generation systems in Jiangsu Power Grid;
江苏电网风力发电系统可行性研究
4)  wind-power generation
风力发电
1.
Life cycle assessment on wind-power generation;
风力发电的生命周期分析
2.
Present status of industrialization development of wind-power generation in China, its problems and countermeasures;
我国风力发电产业发展的现状、问题与对策
3.
Design of the Monitoring and Control System for Wind-Power Generation Converter Experiment Platform;
风力发电变流器实验平台监控系统设计
5)  wind generation
风力发电
1.
Simulation on decoupling control of active and reactive power in doubly-fed wind generation system;
双馈型风力发电机有功无功解耦控制仿真
2.
Adjustable pitch intelligent control of variable speed constant frequency wind generation system;
变速恒频风力发电系统变桨距智能控制
3.
Large scale converter for direct-driven wind generation system;
适于直驱型风力发电系统的大功率变流器
6)  wind energy generation
风力发电
1.
To meet the requirements of modern wind energy generation the turbines should stay connected to the grid in case of a failure,a 1.
现代风力发电的发展,对风电生产提出了新的需求,即在电网电压跌落处于一定范围内时风力发电机装置必须保持和电网相连,其中双馈式风力发电机(DFIG)的电压跌落渡过能力是目前风电研究的一个热点。
2.
With the development of modern wind energy generation, new requirement on the generation was raised, that was the turbines should stay connected to the grid in case of a failure.
现代风力发电的发展,对风电生产提出了新的需求,即在电网电压跌落处于一定范围内时风力发电机装置必须保持和电网相连。
3.
Doubly-fed induction generator (DFIG) has been widely used in the variable-speed constant- frequency (VSCF) wind energy generation system.
双馈感应发电机(DFIG)在变速恒频风力发电中得到广泛应用,对DFIG采用矢量控制可使风电系统实现最大风能追踪和有功、无功解耦调节,从而获得优良的发电运行性能。
补充资料:风力/阳光发电系统


风力/阳光发电系统
wind/photovoltaic system

  风力/阳光发电系统(wind/photovoltaiesystem)风力发电机与太阳电池组成的供电系统。其结构如图所示。由风力发电机及太阳电池输出的直流电皆向蓄电池充电.再由蓄电池输出恒压直流电供直流负载或经逆变器转换为交流电供交流负载。 风能、太阳能都具有能量密度低、稳定性差的弱┌─┐ │ │ ┌────┐└─┘ │.蓄电池 │ └────┘ ┌───┐ │电阻性│ │电热器│ └───┘ 风力/阳光发电系统点,并受地理分布、季节变化、昼夜变化等因素的影响。中国属于季风气候区,冬春季节风力强,太阳辐射弱;夏秋季风力弱,太阳辐射强,两者能量变化趋势相反,风力/阳光发电系统利用能量互补的特性,可输出比较稳定的电能,并增加供电的可靠性。风力/阳光发电系统中风力发电机、太阳电池阵列及蓄电池的容量可根据风能、太阳能变化规律及负载变化规律得出。 (王承胶)
  
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