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Modified boost inverter topology for compensation of unbalanced and nonlinear loads in three phase system

机译:改进的升压逆变器拓扑结构,用于补偿三相系统中的不平衡和非线性负载

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This paper proposes a boost inverter topology to realize the reference currents generated by Instantaneous Symmetrical Component theory. The circuit topology and the switching pattern of the boost inverter boosts up a low voltage DC (e.g. photovoltaic panel or fuel cell) of a sustainable energy source to inject the required filter currents. The proposed boost inverter can perform load balancing, harmonic compensation and reactive power control while supplying real power to the grid. In a PV based boost inverter, PV panels of low output voltage can be connected in parallel, and eventually, a panel's defect or malfunction will not affect the operation of the whole system significantly. The boost inverter's switching are controlled by the Power Balance concept. This inverter topology is connected to the Point of Common Coupling (PCC) of the distribution system. The reference waveform generated from instantaneous symmetrical component theory are used further to generate instantaneous boost reference parameters. These boost reference parameters are then tracked by the boost converters to inject the desired filter currents into the corresponding phase.
机译:本文提出了一种升压逆变器拓扑,以实现瞬时对称分量理论产生的参考电流。升压逆变器的电路拓扑和开关模式可提升可持续能源的低压DC(例如光伏面板或燃料电池),以注入所需的滤波器电流。所提出的升压逆变器可以执行负载平衡,谐波补偿和无功功率控制,同时为电网提供有功功率。在基于PV的升压逆变器中,低输出电压的PV面板可以并联连接,最终,面板的缺陷或故障不会严重影响整个系统的运行。升压逆变器的开关受功率平衡概念控制。该逆变器拓扑连接到配电系统的公共耦合点(PCC)。由瞬时对称分量理论生成的参考波形进一步用于生成瞬时升压参考参数。然后,升压转换器会跟踪这些升压参考参数,以将所需的滤波器电流注入相应的相位。

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