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Predictive Control of Back-to-Back Converters with DC-Link Capacitance Minimization

机译:具有直流连杆电容最小化的背对转换器的预测控制

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In this paper, we propose a predictive control algorithm for back-to-back converters that is robust to low DC-link capacitance. To achieve this goal, an additional control objective, i.e., the charging of the DC-link capacitor within each sampling period, is included in the cost function to penalize the DC-link voltage ripple. In this way, a global optimized switching state is obtained and the good performances are illustrated with small DC-link capacitance in both transients and steady state. Simulation results confirm the effectiveness of the proposed method for both, high and low DC-link capacitance.
机译:在本文中,我们提出了一种对低直流链路电容强大的反向转换器的预测控制算法。为了实现这一目标,包括在每个采样周期内的DC-Link电容的充电的额外控制目标,包括在成本函数中以惩罚DC-Link电压纹波。以这种方式,获得全局优化的切换状态,并且在瞬态和稳态中具有小的DC连杆电容的良好性能。仿真结果证实了所提出的方法,高和低直流链路电容的有效性。

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