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Modelling, simulations and operational performance of a stand-alone hybrid wind/PV energy system supplying induction motor for pumping applications

机译:独立式混合式风电/光伏能源系统供应泵浦应用的建模,仿真和操作性能

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This paper presents a stand-alone Wind/PV hybrid power system supplying a three phase induction motor for pumping applications. The nonlinear dynamical mathematical model for the system components is presented and used for numerical simulations. The system comprises a fixed speed wind turbine driving a self-excited induction generator (SEIG) terminated by capacitor bank, and a photovoltaic (PV) array integrated via DC-DC converter, inverter and LC filter. The two sources feed (IM) driving a centrifugal pump. The duty ratio of the converter is controlled to maintain constant voltage at common coupling point. System performance is tested by changing the load torque coupled to the motor at certain solar irradiance levels and with fixing load torque with successive step changes of the solar irradiance levels. It is concluded that the system has the ability to run at wide range of solar intensity levels and motor loading conditions. Numerical simulations are executed using MATLAB software.
机译:本文介绍了一种独立式风/光伏混合动力系统,供应三相感应电机,用于泵送应用。 提供了系统组件的非线性动力学数学模型,并用于数值模拟。 该系统包括固定速度风力涡轮机,驱动由电容器组终止的自激的感应发电机(SEIG),以及通过DC-DC转换器,逆变器和LC滤波器集成的光伏(PV)阵列。 推动离心泵的两个来源饲料(IM)。 控制转换器的占空比以保持公共耦合点处的恒定电压。 通过在某些太阳辐照度水平上改变与电动机耦合的负载扭矩以及定影负载扭矩来测试系统性能,以及太阳辐照度水平的连续变化。 得出结论,该系统能够在广泛的太阳能水平和电机负载条件下运行。 使用MATLAB软件执行数值模拟。

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