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Hybrid voltage vector preselection based model predictive control to reduce the common-mode voltage for 2-level voltage source inverters

机译:基于混合电压矢量预选模型预测控制,减少了2级电压源逆变器的共模电压

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摘要

Model predictive control (MPC) strategies have been frequently studied in recent years. To reduce the common-mode voltage (CMV) as well as the current total harmonic distortions (THDs) of the 2-level voltage sources (2L-VSIs), a new MPC strategy is proposed in this study considering both the dead-time and the one-step delay effects. First, the reference voltage vector (VV) prediction based MPC strategy is utilised as it is simple and accurate. Next, the VV preselection strategy is studied in detail to remove the CMV spikes. The effects of the dead time on the CMV are analysed, and an improved VV preselection strategy is presented to reduce the CMV spikes. Then, the one-step delay effects are also analysed, and further improvements are made to completely remove the CMV spikes. Moreover, the maximum variation of the current during one control period is studied in-depth to provide a solid theory foundation for dividing the current sector more accurately. As the six non-zero VVs of the 2L-VSI are fully used in the proposed method, not only the CMV but also the current THDs are reduced. Finally, comparative simulation and experimental studies are carried out to validate the effectiveness of the proposed method.
机译:近年来,模型预测控制(MPC)策略经常研究过。为了减少共模电压(CMV)以及2电平电压源(2L-VSIS)的电流总谐波失真(2L-VSIS),在本研究中提出了一种新的MPC策略,考虑到死区时间和一步延迟效应。首先,使用基于参考电压矢量(VV)预测的MPC策略,因为它简单准确。接下来,详细研究了VV预选策略以删除CMV尖峰。分析了死区时间对CMV的影响,并提出了一种改进的VV预选策略以减少CMV尖峰。然后,还分析了一步延迟效应,并进一步改进以完全去除CMV尖峰。此外,研究了一个控制周期期间电流的最大变化深入,以便为更准确地分割电流部门的固体理论基础。随着2L-VSI的六个非零VVS以所提出的方法完全使用,不仅可以减少CMV,而且还减少了当前的THD。最后,进行了对比模拟和实验研究以验证提出的方法的有效性。

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