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Model Predictive Control of Uninterruptible Power Supply with Robust Disturbance Observer

机译:具有鲁棒干扰观测器的不间断电源模型预测控制

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摘要

This paper presents a robust continuous control set model predictive control (CCS-MPC) method to control the output voltage of a three-phase inverter in uninterruptible power supplies (UPS). A robust disturbance observer (DOB) is proposed to estimate the load current of the three-phase UPS without a steady-state error, taking the effect of model uncertainties into account. A CCS-MPC is designed using the DOB for reference voltage tracking purpose, and input constraints are considered in the controller design to calculate the optimal control input. Model uncertainties are defined using polytopic uncertainty class, and a linear matrix inequality (LMI) optimization method is used to compute the optimal observer gain matrix. Another robust controller (RC) is designed based on the DOB and compared with CCS-MPC. The effectiveness of the proposed method (the DOB based CCS-MPC) is evaluated for resistive, inductive, and nonlinear loads then compared with other control methods using a three-phase 5-KVA laboratory experiment UPS system.
机译:本文介绍了一个坚固的连续控制集模型预测控制(CCS-MPC)方法,用于控制三相逆变器在不间断电源(UPS)中的输出电压。提出了一种强大的干扰观察者(DOB)来估计三相UPS的负载电流而没有稳态误差,从而考虑了模型不确定性的效果。使用DOB设计CCS-MPC以进行参考电压跟踪目的,并且在控制器设计中考虑输入约束以计算最佳控制输入。模型不确定性使用多粒子不确定性类定义,并且使用线性矩阵不等式(LMI)优化方法来计算最佳观察者增益矩阵。另一个鲁棒控制器(RC)是基于DOB设计的,并与CCS-MPC进行比较。该方法的有效性(基于DOB基CCS-MPC)被评估用于电阻,电感和非线性载荷,然后与使用三相5-KVA实验室实验UPS系统相比,与其他控制方法进行比较。

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