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Hybrid microgrid testbed involving wind/solar/fuel cell plants: A desing and analysis testbed

机译:涉及风/太阳能/燃料电池工厂的混合微电网试验台:设计和分析试验台

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This study introduces design, integration, control, and analysis of a hybrid microgrid (MG) testbed including a 300 kW wind energy plant of three 100-kW permanent magnet synchronous generators (PMSGs), 50 kW solar energy plant of 200 solar panels, and a 50 kW fuel cell stack. Generation side of the hybrid plant coupled on 120V dc bus where wind energy plant consists of uncontrolled diode rectifier and dc-dc buck converter rail while the solar and fuel cell plants are just controlled by dc-dc buck converters. The energy conversion of solar energy plant is operated by using proportional-integral (PI) controller assisted perturb and observe (P&O) maximum power point tracking (MPPT) algorithm. The dc-dc converters of the left generators are operated with PI controllers. All the dc-dc converters are constituted with mosfets that are switched at 30 kHz. The islanded AC grid of the plant is built by three-phase inverter that generates 480 V 60 Hz industrial voltages of the U.S. The inverter is operated by a sinusoidal pulse width (SPWM) modulator where the modulation index is set to 0.8 and switching frequency to 5 kHz. The proposed testbed is assumed essential to test and validate several case studies in terms of MG and renewable energy source integration issues. The most recent power control methods (PQ) and amplitude controls (V-f) can also be implemented by using the presented testbed.
机译:本研究介绍了混合微电网(MG)试验台的设计,集成,控制和分析,该试验台包括一个300 kW的风能厂和三个100 kW永磁同步发电机(PMSG),50 kW的太阳能厂和200个太阳能电池板,以及一个50千瓦的燃料电池堆。混合动力厂的发电侧连接到120V直流母线,风能厂由不受控制的二极管整流器和DC-DC降压转换器导轨组成,而太阳能和燃料电池厂仅由DC-DC降压转换器控制。通过使用比例积分(PI)控制器辅助扰动和观测(P&O)最大功率点跟踪(MPPT)算法来操作太阳能发电厂的能量转换。左侧发电机的DC-DC转换器通过PI控制器运行。所有的dc-dc转换器均由以30 kHz开关的mosfet组成。该工厂的孤岛交流电网由三相逆变器构建,该逆变器生成美国的480 V 60 Hz工业电压。逆变器由正弦脉冲宽度(SPWM)调制器操作,调制系数设置为0.8,开关频率设置为5 kHz。假设拟议的测试平台对于测试和验证MG​​和可再生能源整合问题方面的多个案例研究至关重要。最新的功率控制方法(PQ)和幅度控制(V-f)也可以通过使用提供的测试台来实现。

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