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首页> 外文期刊>Power Electronics, IET >Centralised model-predictive decoupled active–reactive power control for three-level neutral point clamped photovoltaic inverter with preference selective index-based objective prioritisation
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Centralised model-predictive decoupled active–reactive power control for three-level neutral point clamped photovoltaic inverter with preference selective index-based objective prioritisation

机译:基于优先选择指数的目标优先级的三级中性点钳位光伏逆变器集中模型预测解耦有功功率控制

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摘要

This study presents a single-stage grid-tied three-level neutral point clamped photovoltaic inverter with a centralised model-predictive decoupled active-reactive power control. The proposed centralised model predictive control (CMPC) incorporates the constraints of maximum power extraction, dc-link capacitor voltage balancing and active-reactive power tracking in a single objective function. The dc-link voltage of the inverter is regulated to its reference for extracting the maximum power. In order to eliminate the impact of reactive power exchange on floating dc-link voltage regulation, a decoupled active-reactive power control is used in the CMPC. Furthermore, a preference selective index-based dynamic weighting factor selection approach is introduced to maintain the relative importance between the power tracking and dc-link capacitor voltage balancing. The proposed control approach eliminates the outer dc-link voltage control loop and also, the empirical approach required for the selection of weighting factors. As a result, it ensures an optimal control action in each sampling period to improve the steady-state and dynamic tracking performance of the control objectives. The proposed control approach is experimentally verified by using a 1.2kW laboratory-scale prototype and the results are presented to demonstrate its effectiveness compared to the classical proportional-integral-based model predictive control.
机译:这项研究提出了一种单级并网三电平中性点钳位型光伏逆变器,该逆变器具有集中的模型预测解耦式有功-无功功率控制。所提出的集中模型预测控制(CMPC)在单个目标函数中结合了最大功率提取,直流链路电容器电压平衡和有功-无功功率跟踪的约束。逆变器的直流母线电压调节至其参考值,以提取最大功率。为了消除无功功率交换对浮动直流链路电压调节的影响,在CMPC中使用了去耦的有功-无功功率控制。此外,引入了基于优先选择索引的动态加权因子选择方法,以保持功率跟踪和直流链路电容器电压平衡之间的相对重要性。所提出的控制方法消除了外部直流链路电压控制环路,并且消除了选择加权因子所需的经验方法。结果,它确保了每个采样周期内的最佳控制动作,以改善控制目标的稳态和动态跟踪性能。所提出的控制方法已通过使用1.2kW实验室规模的原型进行了实验验证,结果与传统的基于比例积分的模型预测控制相比,证明了其有效性。

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