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A New Method for Voltage and Frequency Control of Stand-alone Self-excited Induction Generator Using Pulse Width Modulation Converter with Variable DC-link Voltage

机译:可变直流母线电压脉宽调制变换器对独立自励感应发电机电压和频率进行控制的新方法

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Three-phase self-excited induction generators play an important role in renewable energy sources such as wind and hydraulic energy. Their main disadvantage is poor voltage and frequency regulation under varying load and speed. This article introduces a new and simple method for voltage and frequency control of three-phase unregulated speed induction generators in the islanding mode. The method uses a constant voltage constant frequency pulse width modulation converter without regulating the DC capacitor voltage. The capacitor voltage is left changing with the loading conditions, and the AC side voltage is regulated by controlling the modulation index or the normalized d-axis reference voltage for space vector modulation. This eliminates the need for an auxiliary switch in the DC side, reducing the cost and high-frequency current components flowing in the DC capacitor and increasing its lifetime. Simulation results are given for comparing between the conventional and the proposed techniques when applied to a 6-kW generator. The proposed technique is tested under step changes in load and prime mover speed, and it gives the same response as the old technique but without the use of DC side switch. Experimental implementation of the proposed technique is tested on a 1-hp generator, and both simulation and experimental results are given to validate the proposed technique.
机译:三相自励感应发电机在风力和水能等可再生能源中起着重要作用。它们的主要缺点是在变化的负载和速度下电压和频率调节差。本文介绍了一种孤岛模式下的三相非调速感应发电机的电压和频率控制新方法。该方法使用恒定电压恒定频率脉宽调制转换器,而不调节直流电容器电压。电容器电压随负载条件而变化,并且通过控制用于空间矢量调制的调制指数或归一化的d轴参考电压来调节AC侧电压。这样就无需在直流侧安装辅助开关,从而降低了成本,降低了直流电容器中流动的高频电流分量,并延长了其使用寿命。给出了仿真结果,用于比较应用于6 kW发电机的常规技术和拟议技术。所提出的技术在负载和原动机速度的阶跃变化下进行了测试,其响应与旧技术相同,但是没有使用直流侧开关。在1匹马力的发电机上测试了该技术的实验实现,并通过仿真和实验结果验证了该技术的有效性。

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