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Adaptive Algorithms for a Servo System Using a Linear Electric Motor
This paper presents a mathematical model of a servo system consisting of a linear electric motor pulling a hydraulic drive valve. An analytical description of its nonlinear traction characteristic, as well as the resulting reaction from the action of the electromagnetic force and the elastic force o...
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Published in: | Russian electrical engineering 2021-03, Vol.92 (3), p.169-174 |
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container_title | Russian electrical engineering |
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creator | Kuznetsov, V. E. Skakun, A. D. Chung, Phan Thanh Khanh, Nguyen Dinh |
description | This paper presents a mathematical model of a servo system consisting of a linear electric motor pulling a hydraulic drive valve. An analytical description of its nonlinear traction characteristic, as well as the resulting reaction from the action of the electromagnetic force and the elastic force of the centering spring, is presented. The adaptive laws of control of a servo system and a comparative analysis of the effectiveness of adaptive algorithms with a reference model and those using the motions separation technique are given. Simulation results of the model of the servo system with controllers in the MATLAB/Simulink software package are presented to demonstrate the effectiveness of the proposed approaches in this paper. |
doi_str_mv | 10.3103/S1068371221030081 |
format | article |
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E. ; Skakun, A. D. ; Chung, Phan Thanh ; Khanh, Nguyen Dinh</creator><creatorcontrib>Kuznetsov, V. E. ; Skakun, A. D. ; Chung, Phan Thanh ; Khanh, Nguyen Dinh</creatorcontrib><description>This paper presents a mathematical model of a servo system consisting of a linear electric motor pulling a hydraulic drive valve. An analytical description of its nonlinear traction characteristic, as well as the resulting reaction from the action of the electromagnetic force and the elastic force of the centering spring, is presented. The adaptive laws of control of a servo system and a comparative analysis of the effectiveness of adaptive algorithms with a reference model and those using the motions separation technique are given. Simulation results of the model of the servo system with controllers in the MATLAB/Simulink software package are presented to demonstrate the effectiveness of the proposed approaches in this paper.</description><identifier>ISSN: 1068-3712</identifier><identifier>EISSN: 1934-8010</identifier><identifier>DOI: 10.3103/S1068371221030081</identifier><language>eng</language><publisher>Moscow: Pleiades Publishing</publisher><subject>Adaptive algorithms ; Adaptive control ; Algorithms ; Electric motors ; Electromagnetic forces ; Engineering ; Hydraulic drives ; Machines ; Manufacturing ; Mathematical models ; Processes ; Servocontrol</subject><ispartof>Russian electrical engineering, 2021-03, Vol.92 (3), p.169-174</ispartof><rights>Allerton Press, Inc. 2021. ISSN 1068-3712, Russian Electrical Engineering, 2021, Vol. 92, No. 3, pp. 169–174. © Allerton Press, Inc., 2021. 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Engin</addtitle><description>This paper presents a mathematical model of a servo system consisting of a linear electric motor pulling a hydraulic drive valve. An analytical description of its nonlinear traction characteristic, as well as the resulting reaction from the action of the electromagnetic force and the elastic force of the centering spring, is presented. The adaptive laws of control of a servo system and a comparative analysis of the effectiveness of adaptive algorithms with a reference model and those using the motions separation technique are given. 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An analytical description of its nonlinear traction characteristic, as well as the resulting reaction from the action of the electromagnetic force and the elastic force of the centering spring, is presented. The adaptive laws of control of a servo system and a comparative analysis of the effectiveness of adaptive algorithms with a reference model and those using the motions separation technique are given. Simulation results of the model of the servo system with controllers in the MATLAB/Simulink software package are presented to demonstrate the effectiveness of the proposed approaches in this paper.</abstract><cop>Moscow</cop><pub>Pleiades Publishing</pub><doi>10.3103/S1068371221030081</doi><tpages>6</tpages></addata></record> |
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subjects | Adaptive algorithms Adaptive control Algorithms Electric motors Electromagnetic forces Engineering Hydraulic drives Machines Manufacturing Mathematical models Processes Servocontrol |
title | Adaptive Algorithms for a Servo System Using a Linear Electric Motor |
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