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An active modulation technique for single-phase grid-connected CSI

机译:单相并网CSI的有源调制技术

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Due to the interaction between the rectified voltage appeared on the dc side of the grid-connected current source inverter (CSI) and the buffer inductor, the input current on the dc side inherently consists of a second-order harmonic of the grid frequency. This harmonic component will be modulated by the pulsewidth modulation (PWM) signal that results in generating low-order harmonics at the output and thus injecting into the grid. This paper presents an active nonlinear modulation technique for reducing the low-order harmonics. The method requires a simple analog circuitry to modify the modulation function of sinusoidal PWM (SPWM) scheme. It is based on measuring the dc and ac components of the buffer inductor current to compensate the modulation effect from the dc side to the ac side of the CSI. Apart from reducing the harmonic content, the method can also reduce the required value of the buffer inductor. Modeling, design, and analysis of the method are given. The proposed method has been tested with a 1kW, 220V, 50Hz prototype, powered by a dc voltage of 80V. The results are favorably compared with the performance of the CSI with the SPWM scheme.
机译:由于出现在并网电流源逆变器(CSI)的dc侧上的整流电压与缓冲电感器之间的相互作用,因此dc侧上的输入电流固有地由电网频率的二次谐波组成。该谐波分量将通过脉冲宽度调制(PWM)信号进行调制,从而导致在输出端生成低阶谐波,从而注入电网。本文提出了一种用于降低低次谐波的有源非线性调制技术。该方法需要一个简单的模拟电路来修改正弦PWM(SPWM)方案的调制功能。它基于测量缓冲电感器电流的直流和交流分量,以补偿从CSI的直流侧到交流侧的调制效果。除了减少谐波含量,该方法还可以减少缓冲电感器的所需值。给出了该方法的建模,设计和分析。所提出的方法已经过1kW,220V,50Hz原型的测试,并由80V直流电压供电。将结果与使用SPWM方案的CSI的性能进行了比较。

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