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Modeling and control of induction generator applied to variable speed Wind Energy Systems Conversion

机译:诱导发电机的建模与控制应用于变速风能系统转换

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This paper presents study of a Wind Energy Conversion System (WECS) based on asynchronous machine connected to a power grid through a back to back converter. The power output of a WECS fluctuates with the wind velocity, which makes it difficult to analyze and control. The control objectives of generator side converter (GSC) are to optimize the energy capture from the wind turbine. The grid connected converter delivering the energy from the machine side to the utility grid regulated the DC link voltage and the power flows to the grid. We develop an approach to control the electrical and mechanical variables. This approach is based on the PI control of DC link voltage, pitch control of the wind turbine and a hysteresis control for the grid side converter. The effects of a voltage dip on different variables of the network are analyzed and the system's performance is presented. The complete control system has been analyzed and validated by Matlab simulation.
机译:本文介绍了基于异步机的风能转换系统(WECS)通过返回转换器连接到电网的异步机器。 WECS的功率输出与风速波动,这使得难以分析和控制。发电机侧转换器(GSC)的控制目标是优化来自风力涡轮机的能量捕获。网格连接转换器从机器侧输送能量​​到实用网格调节DC链路电压,电源流到电网。我们开发一种控制电气和机械变量的方法。该方法基于PI控制DC链路电压,风力涡轮机的俯仰控制和网格侧转换器的滞后控制。分析了电压DIP对网络不同变量的影响,并提出了系统的性能。通过Matlab仿真分析和验证了完整的控制系统。

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