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SVPWM-based current controller with grid harmonic compensation for three-phase grid-connected VSI

机译:基于SVPWM的电流控制器,具有电网谐波补偿功能,适用于三相并网VSI

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Voltage space vector pulse-width modulation (SVPWM) is widely used in the current control of three-phase voltage-source inverters (VSI). However, as a voltage-type modulator, SVPWM brings some drawbacks to controllers, such as the compromised output current due to the back EMF disturbance and nonlinearity of the system, the lack of inherent overcurrent protection, etc. In this paper, SVPWM-based current control strategy with grid harmonics compensation and dual-timer sampling scheme is proposed and implemented in a 30 kW three-phase grid-connected VSI. Both simulation and experimental results verify that the proposed current controller offers a high performance of current control even under the influence of the grid harmonics. At the same time, the proposed dual-timer sampling scheme not only minimizes the system control delay but also offers an improved response for overcurrent protection to the system.
机译:电压空间矢量脉宽调制(SVPWM)广泛用于三相电压源逆变器(VSI)的电流控制中。但是,作为电压型调制器,SVPWM给控制器带来了一些缺点,例如由于反电动势干扰和系统非线性而导致输出电流降低,缺乏固有的过流保护等。提出并实现了具有电网谐波补偿和双定时器采样方案的电流控制策略,并在30 kW三相并网VSI中实现了该策略。仿真和实验结果均证明,即使在电网谐波的影响下,所提出的电流控制器也能提供高性能的电流控制。同时,提出的双定时器采样方案不仅使系统控制延迟最小,而且为​​系统的过流保护提供了改进的响应。

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