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A Backstepping Control Strategy Applied to the Connected Hybrid Renewable Energy System Operated in MPPT

机译:应用于MPPT的连接混合可再生能源系统的BackStepping控制策略

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In this paper, an interconnected grid hybrid renewable energy system, HRES, (wind/PV) is studied. The wind energy conversion system, WECS, is constructed aroud a wind turbine coupled to a double fed induction generator, DFIG. The stator of DFIG is directly connected to the grid and the rotor is connected to the grid through back-to-back power converters. To control the wind system, we have applied the adaptive backstepping control strategy for both converters. The PV energy system is composed by PV cell energy and the DC-DC boost converter. To control the DC-DC boost converter, we have applied tow cascade PI control loop. The first one is used to regulate the output current or the second one is used to control the output voltage. We have considered in both control structure the MPPT algorithm. To study the comportment of the HRES against the environment changes, we have considered some simulations scenarios for the wind speed, the irradiance and the temperature. We have studied the dynamic performances of the proposed control strategy.
机译:本文研究了互连电网混合可再生能源系统,HRES(风/ PV)。风能转换系统WECs由耦合到双馈感应发生器的风力涡轮机,DFIG构造。 DFIG的定子直接连接到栅格,转子通过背对后功率转换器连接到栅格。为了控制风系统,我们已经应用了两个转换器的自适应BackStepping控制策略。 PV能量系统由PV电池能量和DC-DC升压转换器组成。要控制DC-DC Boost转换器,我们已应用牵引级联PI控制回路。第一个用于调节输出电流,或者第二个用于控制输出电压。我们在控制结构中考虑了MPPT算法。为研究HRES对环境变化的展反,我们考虑了风速,辐照度和温度的一些模拟情景。我们研究了拟议的控制策略的动态性能。

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