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Study of Advanced Current Control Strategies for Three-Phase Grid-Connected PWM Inverters for Distributed Generation

机译:三相电网连接PWM逆变器的先进电流控制策略研究

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Three-phase PWM voltage-source inverters (VSI) are widely employed for distributed generation (DG) systems. Since the voltage at the point of common coupling should not be regulated by DGs, the current control strategy of grid-connected inverters plays a dominant role in providing high quality power to electric grids. The Authors have proposed two advanced SVPWM-based current controllers to improve the performance of grid-connected VSIs for DG systems. Three current control strategies, namely hysteresis current control, SVPWM-based PI control and SVPWM-based predictive control, have been developed, implemented, and studied on a 30kW three-phase grid-connected PWM VSI. Effective compensation for the grid harmonics and for the system nonlinearity due to control delay and switching dead time are investigated. The results of computer simulations and experimental tests are provided to verify and compare the performances of these three current control strategies.
机译:三相PWM电压源逆变器(VSI)广泛用于分布式发电(DG)系统。由于公共耦合点的电压不应由DGS调节,因此网格连接逆变器的电流控制策略在为电网提供高质量的电力方面起着主导作用。作者提出了两个先进的基于SVPWM的电流控制器,可以提高DG系统的网格连接的VSI的性能。已经开发了三个电流控制策略,即滞后电流控制,基于SVPWM的PI控制和基于SVPWM的预测控制,并在30kW三相网格连接的PWM VSI上研究。研究了电网谐波的有效补偿和由于控制延迟和切换死区时间而导致的系统非线性。提供计算机仿真和实验测试的结果以验证并比较这三个当前控制策略的性能。

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