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Application of the Model Predictive Control and SVPWM Techniques on Five-phase Inverter

机译:模型预测控制和SVPWM技术在五相逆变器中的应用

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The multi-phase inverters have attracted recently much attention among the researchers, practitioners and industries due to their many advantages compared to their conventional countparts of single and three-phase inverters, which have been used widely in almost the domestic, commercial and industrial application. The present paper presents an invitation on the application of the space vector pulse width modulation (SVPWM) control technique and the model predictive control (MPC) technique on a five-phase inverter powering a star connected five-phase load. Firstly, the principle of each control technique has been presented in details, then two simulation experiments have been performed on five-phase two-level inverter feeding a balanced star five-phase RL load using the SVPWM control technique and the MPC control technique separately, where a load change is considered in this two tests. The main aim from this study is to discover the main pros and cons of each control technique and their applicability in ensuring the control of five-phase inverter under different operation constraints or conditions. The obtained results for the both cases are presented and discussed based on the main key factors such as the harmonics content, the THD, the dynamic response to the load variation, the dynamic behaviours at transient situation and the computing requirement. It can be said that the present comparative study has allowed shedding the light on the main features and requirements of the applicability of the both control techniques with multi-phase inverters, which are depending on the requirement of the related application and the merits of each control technique.
机译:由于与单一和三相逆变器的传统倒数相比,多相逆变器在研究人员,从业者和行业中吸引了研究人员,从业者和行业之间的重视。本文介绍了空间矢量脉冲宽度调制(SVPWM)控制技术的应用和模型预测控制(MPC)技术在五相逆变器供电的五相逆变器上供电。首先,已经详细介绍了每个控制技术的原理,然后使用SVPWM控制技术和MPC控制技术分别对五相二级逆变器进行了两种模拟实验,对五相二级逆变器馈送平衡星形五相RL负载,在这两个测试中考虑了负载变化。本研究的主要目的是发现每个控制技术的主要优点和缺点及其适用性在确保在不同操作约束或条件下控制五相逆变器。基于谐波含量,THD,负载变化的动态响应等主要关键因素来呈现和讨论两种情况的所获得的结果,并讨论了瞬态情况下的动态行为以及计算要求。可以说,本比较研究允许在具有多相逆变器的两个控制技术的适用性上脱离光线,这取决于相关申请的要求和每个控制的优点技术。

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