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Ripple-reduced model predictive direct power control for active front-end power converters with extended switching vectors and time-optimised control

机译:具有扩展的开关矢量和时间优化控制的有源前端功率转换器的纹波减少模型预测直接功率控制

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Model predictive control (MPC) is an attractive technique for power electronics and drives. It requires no extra modulators and considers the non-linear nature of the power converter, so remarkable control performance can be achieved. However, since the conventional MPC scheme uses only one switching state during the whole control interval, ripples of the control variables are more evident than that of the classical modulator based techniques. This study proposed a ripple-reduced model predictive direct power control (RR-MPDPC) scheme for the grid-tied active front end using a fully field programmable gate array-based platform. The novelty of the proposed RR-MPDPC is that through extended switching vectors and time-optimised control, more freedoms and precise tracking possibility are realised in the predictive controller. The proposed control scheme is compared with the conventional MPDPC and the recently reported duty optimal MPDPC scheme (DutyOpt-MPDPC) through experimental data. Experimental results confirm that better performance is achieved using the proposed RR-MPDPC scheme.
机译:模型预测控制(MPC)是用于电力电子设备和驱动器的一种有吸引力的技术。它不需要额外的调制器,并且考虑了功率转换器的非线性特性,因此可以实现出色的控制性能。但是,由于传统的MPC方案在整个控制间隔内仅使用一个开关状态,因此控制变量的波动要比基于传统调制器的技术的波动更为明显。这项研究提出了使用基于全场可编程门阵列的平台的并网有源前端的纹波减少模型预测直接功率控制(RR-MPDPC)方案。所提出的RR-MPDPC的新颖之处在于,通过扩展开关矢量和时间优化控制,可以在预测控制器中实现更多的自由度和精确的跟踪可能性。通过实验数据,将提出的控制方案与常规MPDPC和最近报告的占空比最佳MPDPC方案(DutyOpt-MPDPC)进行了比较。实验结果证实,使用所提出的RR-MPDPC方案可以获得更好的性能。

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