首页> 外文会议>2013 International Conference on Circuits, Power and Computing Technologies >A direct torque controlled cage induction generator using back to back PWM converters for grid connected variable speed wind energy system
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A direct torque controlled cage induction generator using back to back PWM converters for grid connected variable speed wind energy system

机译:使用背靠背PWM转换器的直接转矩控制笼式感应发电机,用于并网变速风能系统

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摘要

A wind energy conversion system (WECS) differs from a conventional power system in a lot of ways. In a conventional power plant, the power generation can be controlled easily, as the fluctuations in active and reactive power are not so frequent. But, the power output of a WECS fluctuates with the wind velocity, which makes it difficult to analyze and control. Various approaches have been developed to enhance the performance of a WECS. A variable-speed wind turbine has two back-to-back PWM converters which consists of a machine-side converter for generator control and a grid-side converter for grid-side power control. In this paper Direct Torque Control scheme has been adopted for generator- side convertor control and Grid voltage oriented Vector control scheme is adopted for controlling the grid- side convertor. In both the schemes PI controllers are used. The whole scheme is simulated in Matlab and the results are interpreted.
机译:风能转换系统(WECS)在很多方面与常规电力系统不同。在常规发电厂中,由于有功功率和无功功率的波动并不那么频繁,因此可以轻松控制发电。但是,WECS的功率输出会随风速而波动,这使其难以分析和控制。已经开发出各种方法来增强WECS的性能。变速风力涡轮机具有两个背靠背PWM转换器,该转换器由用于发电机控制的机器侧转换器和用于电网侧功率控制的电网侧转换器组成。在本文中,发电机侧变流器控制采用直接转矩控制方案,而电网侧变流器采用面向电网电压的矢量控制方案。在这两种方案中,都使用PI控制器。整个方案在Matlab中进行了仿真,并对结果进行了解释。

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