Effects and compensations of computational delay in finite set-model predictive control in renewable energy system

A. Almaktoof, A. Raji, M. Kahn
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引用次数: 2

Abstract

This paper focuses on the model predictive current control of power converters with the aim of indicating the influence of some system parameters used in predictive control on the load current and load voltage. A model predictive current control algorithm is proposed, specifically directed at the utilization of power obtained from renewable energy systems (RESs). In this study the renewable energy systems model is used to investigate system performance when power is supplied to a resistive-inductive load (RL-load). A finite set-model predictive current control (FS-MPCC) method is developed to control the output current of three-phase, voltage source inverter (VSI). The approximation methods for the derivatives of the model differential equations and delay compensation of model predictive control (MPC) system for power converters are assessed. Simulation results of a two-level, three-phase VSI using FS-MPCC are carried out to show the effects of different approximation methods on the load current and voltage regulation as well as on the predictive current control operation with and without delay compensation for different sampling times. It has been noticed that the ripple in the load currents is considerable when the delay compensation is not accounted for and the delay compensation method that reduces the ripple and operation is similar to the ideal case. It is confirmed that for larger sampling times the delay is noticeable, but when the sampling time is smaller it is not visible.
可再生能源系统有限集模型预测控制中计算延迟的影响与补偿
本文主要研究电力变换器的模型预测电流控制,目的是研究预测控制中使用的一些系统参数对负载电流和负载电压的影响。针对可再生能源系统(RESs)的电力利用问题,提出了一种模型预测电流控制算法。在本研究中,使用可再生能源系统模型来研究供电给阻感性负载(rl -负载)时的系统性能。针对三相电压源逆变器的输出电流控制问题,提出了一种有限集模型预测电流控制方法(FS-MPCC)。研究了变流器模型预测控制(MPC)系统的模型微分方程导数逼近方法和时滞补偿方法。利用FS-MPCC对两电平三相VSI进行了仿真,展示了不同近似方法对负载电流和电压调节的影响,以及不同采样时间下有延迟补偿和无延迟补偿的预测电流控制操作的影响。我们注意到,在不考虑延迟补偿的情况下,负载电流中的纹波是相当大的,而减少纹波和运行的延迟补偿方法与理想情况相似。可以确定,对于较大的采样时间,延迟是明显的,但当采样时间较小时,它是不可见的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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