利用两种模型预测控制方案对VSC进行性能评估

M. Alhasheem, Ahmed Abdelhakim, T. Dragičević, L. Dalessandro, F. Blaabjerg
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引用次数: 2

摘要

有限控制集模型预测控制(FCS-MPC)方法以其简单、快速的动态特性在电力电子领域的应用日益受到重视。本文介绍了采用两种FCS-MPC算法对两电平三相电压源变换器(2L-VSC)进行的实验评估。为了进行这样的比较评估,在考虑线性负载和非线性负载的情况下,测量了2L-VSC效率和总谐波失真电压(THDv)。新算法在THD和2L-VSC效率方面都优于传统算法。实验结果还验证了基于载波的脉宽调制(CB-PWM)系统的性能。通过在4kw 2L-VSC样机上的实验验证,这些结果在线性和非线性负载下都得到了验证。可以得出结论,使用传统的FCS-MPC、改进的FCS-MPC和CB-PWM算法可以获得相当的性能。
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Performance assessment of the VSC using two model predictive control schemes
Finite control set model predictive control (FCS-MPC) methods in different power electronics application are gaining high attention due to their simplicity and fast dynamics. This paper introduces an experimental assessment of the two-level three-phase voltage source converter (2L-VSC) using two FCS-MPC algorithms. In order to perform such comparative evaluation, the 2L-VSC efficiency and total harmonics distortion voltage (THDv) have been measured where considering a linear load and non-linear load. The new algorithm gives better results than the conventional algorithm in terms of the THD and 2L-VSC efficiency. The results also demonstrate the performance of the system using carrier based pulse width modulation (CB-PWM). These findings have been validated for both linear and non-linear loads through experimental verification on 4 kW 2L-VSC prototype. It can be concluded that a comparable performance is achieved by using the conventional FCS-MPC, Improved FCS-MPC, and CB-PWM algorithms.
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