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Self-excitation and control of an induction generator in a stand-alone wind energy conversion system

机译:独立风能转换系统中感应发电机的自励磁和控制

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This study presents a rugged and cost-effective scheme for start-up and operation of a stand-alone squirrel cage induction machine (SCIG) for a wind energy conversion system (WECS). A voltage source converter (VSC) directly interfaces the SCIG with an equivalent dc load network, which could also be the DC link of an inverter. The VSC dc bus is supported by an electrolytic capacitor and the proposed scheme ensures reliable start up with these rudimentary components. The dc bus voltage is ramped to the rated value from a small initial voltage produced by remanent magnetism of the SCIG core. Subsequently, the load is applied. The V/f control paradigm for motoring operation is suitably extended to the SCIG for controlling both voltage build-up and dynamic transients. A controller is specifically designed to maintain constant dc bus voltage under wind speed and electrical load variations. Steady-state machine flux is maintained constant up to the base speed, which maximises machine utilisation and power extraction especially at higher wind speeds. The overall system modelling and analytical control design is presented. The proposed control strategy has been validated through simulation and experimentally verified on a low power (2.2 kW) laboratory prototype.
机译:这项研究为风能转换系统(WECS)的独立鼠笼式感应机(SCIG)的启动和运行提出了一种坚固且经济高效的方案。电压源转换器(VSC)将SCIG直接连接到等效的直流负载网络,该负载网络也可以是逆变器的直流母线。 VSC直流母线由电解电容器支持,所提出的方案可确保使用这些基本组件可靠地启动。直流总线电压从SCIG磁芯的剩磁产生的很小的初始电压上升到额定值。随后,施加负载。用于电动机运行的V / f控制范式已适当地扩展到SCIG,以控制电压累积和动态瞬变。控制器经过专门设计,可在风速和电气负载变化下保持恒定的直流总线电压。稳态机器通量在直到基本速度的情况下都保持恒定,这可以最大程度地提高机器利用率和功率提取,尤其是在较高风速下。介绍了整个系统的建模和分析控制设计。拟议的控制策略已通过仿真验证,并在低功率(2.2 kW)实验室原型上进行了实验验证。

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