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Lyapunov-based finite control-set model predictive control for nested neutral point-clamped converters without weighting factors

机译:基于Lyapunov的有限控制设置模型预测控制,用于嵌套中性点夹紧转换器,无需加权因子

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摘要

This paper presents a novel finite control-set model predictive control (FCS-MPC) strategy for solving the well-known challenges in predictive control regulated NNPCs, which aims to avoid the tedious online adjustment of weighting factors and to achieve the flexible power regulation. Firstly, a modified cost function, which is inspired by Lyapunov control theory, is formulated from system stability point of view. As such, the designed Lyapunov-based cost function has a good potential to avoid the selection of weighting factors for the conventional FCS-MPC scheme, especially in the presence of multiple control objectives. Next, in order to achieve satisfactory regulation performance, a dynamic reference design technique is introduced as an alternative solution to serve this purpose. Worth to note that the computational complexity will be increased while applying the proposed design methodology to the control of NNPCs. In this sense, a computationally efficient FCS-MPC strategy based on Lyapunov theory is presented here. Therefore, the overall computational burden is significantly decreased while maintaining fast transient performance and flying capacitor voltages balancing. Finally, compared with the state-of-the-art FCS-MPC strategies, the effectiveness and feasibility of the proposed methodology for NNPCs are confirmed through comprehensive simulation and experimental results.
机译:本文提出了一种新型有限控制设定的模型预测控制(FCS-MPC)策略,用于解决预测控制规范的NNPC中的众所周知的挑战,旨在避免繁琐的在线调整加权因子并实现灵活的功率调节。首先,由Lyapunov控制理论启发的修改成本函数从系统稳定性的角度制定。因此,所设计的Lyapunov的成本函数具有良好的潜力,避免为传统的FCS-MPC方案选择加权因子,尤其是在存在多种控制目标的情况下。接下来,为了实现令人满意的调节性能,将动态参考设计技术作为替代解决方案,以满足该目的。值得注意的是,在将建议的设计方法应用于NNPC的控制时,将增加计算复杂性。从这个意义上讲,这里介绍了基于Lyapunov理论的计算上有效的FCS-MPC策略。因此,整体计算负担在保持快速瞬态性能和飞行电容器电压平衡的同时显着降低。最后,与最先进的FCS-MPC策略相比,通过综合模拟和实验结果确认了NNPC的提出方法的有效性和可行性。

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