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Transient performance of self-excited wind-turbine induction generator under induction motor load

机译:自感应风力发电机感应发电机负荷下的暂态性能

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Self-excited induction generators (SEIG) are increasingly employed in remote areas for electricity production from wind energy. Analyzing of a stand-alone SEIG dynamic performance is largely limited to static load. This paper presents dynamic simulation of small SEIG feeding induction motor (IM) load. Mathematical models of SEIG, IM, and wind turbine are at first clearly implemented into Matlab/Simulink environment. The IM load coupled with constant and speed-squared mechanical torque are mainly considered under sudden connection to the SEIG. The study results reveal that the IM load with particular constant torque mostly causes a greatest fall of SEIG voltage during the sudden connection or decreasing of wind speed. The constant toque load also results in deepest and longest duration of SEIG voltage sag when the IM load is initially connected to the SEIG due to insufficient reactive power from the excitation capacitor. By applying an extra starting capacitor, the sufficient reactive power support can be obtained for successful startup of the IM load to the SEIG.
机译:自励式感应发电机(SEIG)越来越多地用于偏远地区,以利用风能发电。独立SEIG的动态性能分析在很大程度上仅限于静态负载。本文介绍了小型SEIG进给感应电动机(IM)负载的动态仿真。首先,在Matlab / Simulink环境中明确实现了SEIG,IM和风力涡轮机的数学模型。在突然连接到SEIG的情况下,主要考虑IM负载以及恒定和速度平方的机械转矩。研究结果表明,在突然连接或风速降低期间,具有特定恒定转矩的IM负载主要会导致SEIG电压最大下降。当IM负载最初连接到SEIG时,由于来自激励电容器的无功功率不足,恒定的转矩负载还会导致SEIG电压骤降的最深和最长持续时间。通过使用一个额外的启动电容器,可以获得足够的无功功率支持,以成功启动SEIG的IM负载。

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