三相并网AC/DC变换器的最优占空比模型预测电流控制

Yongchang Zhang, Yubin Peng
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引用次数: 17

摘要

传统的模型预测电流控制(M-PCC)采用离散时间系统模型,通过最小化与电流误差相关的代价函数来选择最佳电压矢量。然而,由于双电平变换器中电压矢量的数量有限,采样频率必须很高才能达到令人满意的性能。为了提高传统的单矢量MPCC的稳态性能,本文提出了一种具有最优占空比的改进的三相交/直流变换器MPCC。该方法仅将一小部分控制周期分配给从传统MPCC中选择的电压矢量,其余时间分配给零矢量。所选电压矢量的持续时间是基于电流误差最小化的原理得到的。仿真和实验结果验证了该方法的有效性。
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Model predictive current control with optimal duty cycle for three-phase grid-connected AC/DC converters
Conventional model predictive current control (M-PCC) uses the discrete-time system model to select the best voltage vector by minimizing a cost function, which is related to the current errors. However, due to the limited number of voltage vectors in two-level converters, the sampling frequency has to be high to achieve satisfactory performance. To improve the steady state performance of conventional single-vector-based MPCC, this paper proposes an improved MPCC with optimal duty cycle for a three-phase ac/dc converter. The proposed method allocates only a fraction of control period to the voltage vector selected from conventional MPCC and the rest of time for a zero vector. The duration of the selected voltage vector is obtained based on the principle of current error minimization. Both simulation and experimental results validate the effectiveness of the proposed method.
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