控制理论(社会学)
稳健性(进化)
转换器
史密斯预测器
计算机科学
电力电子
补偿(心理学)
控制工程
控制系统
鲁棒控制
模型预测控制
灵活性(工程)
电力系统
逆变器
功率(物理)
控制(管理)
工程类
温度控制
数学
电压
PID控制器
精神分析
统计
心理学
化学
生物化学
量子力学
人工智能
基因
物理
电气工程
作者
Zuo Wang,Keliang Zhou,Shihua Li,Yongheng Yang
标识
DOI:10.1109/peac.2018.8590593
摘要
Deadbeat control scheme is widely implemented in the control of power electronics and electrical drives, which is of simplification, rapidity and flexibility. However, owing to its sensitive to model uncertainties and unmodeled dynamics, the practical control performance is severely degraded and sometimes even unstable. Uncertain time delay is a typical case of model uncertainties, which severely deteriorates the control accuracy and dramatically reduce the system stability margin of deadbeat control. In this paper, the time delay effects on the control performance and system stability are investigated. A fractional-order Smith Predictor based solution is proposed to compensate arbitrary time delay with high accuracy, simple structure, and good robustness. The composite control scheme offers accurate time delay compensations in digital implementation and considerably enhances the robustness of the control system, which will effectively promote widespread applications of the deadbeat scheme. An application example of three-phase inverter system is explored to comprehensively illustrate the feasibility and effectiveness of the proposed scheme.
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