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首页> 外文期刊>IEEE Transactions on Energy Conversion >Controller Design for an Induction Generator Driven by a Variable-Speed Wind Turbine
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Controller Design for an Induction Generator Driven by a Variable-Speed Wind Turbine

机译:变速风力发电机驱动的感应发电机的控制器设计

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This paper presents the modeling, controller design and a steady-state analysis algorithm for a wind-driven induction generator system. An output feedback linear quadratic controller is designed for the static synchronous compensator (STATCOM) and the variable blade pitch in a wind energy conversion system (WECS) in order to reach the voltage and mechanical power control under both grid-connection and islanding conditions. A two-reference-frame model is proposed to decouple the STATCOM real and reactive power control loops for the output feedback controller. To ensure zero steady-state voltage errors for the output feedback controller, the integrals of load bus voltage deviation and de-capacitor voltage deviation are employed as the additional state variables. Pole-placement technique is used to determine a proper weighting matrix for the linear quadratic controller such that satisfactory damping characteristics can be achieved for the closed-loop system. Effects of various system disturbances on the dynamic performance have been simulated, and the results reveal that the proposed controller is effective in regulating the load voltage and stabilizing the generator rotating speed for the WECS either connected with or disconnected from the power grid. In addition, proper steady-state operating points for an isolated induction generator can be determined by the proposed steady-state analysis algorithm. Constant output frequency control using the derived steady-state characteristics of the isolated induction generator is then demonstrated in this paper.
机译:本文介绍了风力感应发电机系统的建模,控制器设计和稳态分析算法。针对风能转换系统(WECS)中的静态同步补偿器(STATCOM)和可变叶片螺距设计了输出反馈线性二次控制器,以便在并网和孤岛条件下达到电压和机械功率控制。提出了两个参考框架模型来解耦STATCOM有功和无功功率控制环路,以用于输出反馈控制器。为了确保输出反馈控制器的稳态电压误差为零,将负载总线电压偏差和去电容器电压偏差的积分用作附加状态变量。极点放置技术用于为线性二次控制器确定合适的加权矩阵,从而可以为闭环系统获得令人满意的阻尼特性。模拟了各种系统干扰对动态性能的影响,结果表明,所提出的控制器对于调节与电网连接或断开的WECS的负载电压和稳定发电机转速都是有效的。此外,可以通过提出的稳态分析算法确定隔离式感应发电机的适当稳态工作点。然后,本文介绍了利用导出的感应式发电机的稳态特性进行的恒定输出频率控制。

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