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Analysis, design and implementation of a quasi-proportional-resonant controller for multifunctional capacitive-coupling grid-connected inverter

机译:多功能电容耦合并网逆变器准比例谐振控制器的分析,设计与实现

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The capacitive-coupling grid-connected inverter (CGCI) is able to achieve reactive power compensation and active power transfer simultaneously with a low operational voltage. The CGCI is coupled to the point of common coupling (PCC) via a second-order LC circuit, which makes its modeling and current control characteristics differs from the conventional inductive-coupling grid-connected inverter. The direct current tracking with hysteresis pulse width modulation (PWM) was used in previous studies. However, this method suffers from widely varying switching frequency and large current ripples. A Quasi-proportional-resonant (Quasi-PR) current controller is designed for the CGCI in this paper. Its modeling and parameter selection are studied in detail. In contrast with proportional-integration (PI) current controller, the Quasi-PR controller reduces steady-state error. It also generates a voltage reference for applying the carrier-based PWM to improve output waveform quality. Simulation results are provided to verify the Quasi-PR controller and comparison with the PI controller is also done. A lab-scale prototype is built. Experimental results are given to show the validity of the proposed control method and its design.
机译:电容耦合并网逆变器(CGCI)能够以低工作电压同时实现无功功率补偿和有功功率传输。 CGCI通过二阶LC电路耦合到公共耦合点(PCC),这使其建模和电流控制特性不同于传统的电感耦合并网逆变器。在先前的研究中使用了具有滞后脉冲宽度调制(PWM)的直流跟踪。但是,这种方法的开关频率变化很大,电流纹波较大。本文为CGCI设计了准比例谐振(Quasi-PR)电流控制器。详细研究了它的建模和参数选择。与比例积分(PI)电流控制器相比,准PR控制器减少了稳态误差。它还会生成一个电压基准,以应用基于载波的PWM来改善输出波形质量。提供仿真结果以验证Quasi-PR控制器,并完成与PI控制器的比较。建立了实验室规模的原型。实验结果表明了该控制方法及其设计的有效性。

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