Dynamic analysis and fractional-order adaptive sliding mode control for a novel fractional-order ferroresonance system

被引:0
|
作者
杨宁宁 [1 ,2 ]
韩宇超 [2 ]
吴朝俊 [3 ]
贾嵘 [1 ,2 ]
刘崇新 [4 ]
机构
[1] State Key Laboratory Base of Eco-hydraulic Engineering in Arid Area, Xi'an University of Technology
[2] Institute of Water Resources and Hydro-electric Engineering, Xi'an University of Technology
[3] College of Electronics and Information, Xi'an Polytechnic University
[4] School of Electrical Engineering, Xi'an Jiaotong University
基金
中国国家自然科学基金;
关键词
fractional-order ferroresonance system; fractional-order sliding mode control; adaptive control; nonlinear circuit emulator;
D O I
暂无
中图分类号
O231 [控制论(控制论的数学理论)];
学科分类号
070105 ; 0711 ; 071101 ; 0811 ; 081101 ;
摘要
Ferroresonance is a complex nonlinear electrotechnical phenomenon, which can result in thermal and electrical stresses on the electric power system equipments due to the over voltages and over currents it generates. The prediction or determination of ferroresonance depends mainly on the accuracy of the model used. Fractional-order models are more accurate than the integer-order models. In this paper, a fractional-order ferroresonance model is proposed. The influence of the order on the dynamic behaviors of this fractional-order system under different parameters n and F is investigated.Compared with the integral-order ferroresonance system, small change of the order not only affects the dynamic behavior of the system, but also significantly affects the harmonic components of the system. Then the fractional-order ferroresonance system is implemented by nonlinear circuit emulator. Finally, a fractional-order adaptive sliding mode control(FASMC)method is used to eliminate the abnormal operation state of power system. Since the introduction of the fractional-order sliding mode surface and the adaptive factor, the robustness and disturbance rejection of the controlled system are enhanced. Numerical simulation results demonstrate that the proposed FASMC controller works well for suppression of ferroresonance over voltage.
引用
收藏
页码:78 / 90
页数:13
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