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A Real-Time Computation Method With Dual Sampling Mode to Improve the Current Control Performance of the $LCL$-Type Grid-Connected Inverter

机译:具有双采样模式的实时计算方法,可提高 $ LCL $ -类型的电流控制性能并网逆变器

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Due to the higher attenuation of switching frequency current harmonics, the filter has been widely used in grid-connected inverters. To deal with the resonance of the filter, the capacitor current is usually fed back to damp the resonance actively. However, the computation and pulsewidth modulation (PWM) delays in the digital control system have a significant influence on the active damping method, resulting in poor system robustness. Meanwhile, these delays also reduce the control bandwidth greatly and thus impose a severe limitation on the low-frequency gains. In this paper, a real-time computation method with dual sampling mode is proposed to remove the computation delay from the inner active damping loop and the outer grid-current control loop simultaneously; thus, the system robustness and the control performance can be greatly improved. Moreover, the time duration between the sampling instant and the switching transition of the inverter bridge is extended by the proposed method, which effectively prevents the switching noise distorting the sampled signals. Therefore, the noise immunity of the inverter is also improved greatly. Experimental results from a 6-kW -type single-phase grid-connected inverter confirm the theoretical expectations and the effectiveness of the proposed method.
机译:由于开关频率电流谐波的衰减较大,该滤波器已广泛用于并网逆变器中。为了应对滤波器的谐振,通常会反馈电容器电流以主动抑制谐振。但是,数字控制系统中的计算和脉宽调制(PWM)延迟对有源阻尼方法有重大影响,导致系统的鲁棒性较差。同时,这些延迟也极大地降低了控制带宽,从而严重限制了低频增益。本文提出了一种双采样模式的实时计算方法,以同时消除内部有源阻尼环路和外部电网电流控制环路的计算延迟。因此,可以大大提高系统的鲁棒性和控制性能。此外,所提出的方法延长了采样时刻与逆变器桥的切换过渡之间的持续时间,有效地防止了开关噪声使采样信号失真。因此,逆变器的抗干扰性也大大提高。 6 kW型单相并网逆变器的实验结果证实了该方法的理论预期和有效性。

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