Study of Nonlinear Characteristics and Model Based Control for Proportional Electromagnet

The nonlinear characteristics of proportional electromagnet caused by hysteresis bring great difficulties on its accurate position tracking control by current. In order to enhance the practicability and reliability of long stroke electromagnet in case of position sensor fault and improve the positio...

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Main Authors: En-Zhe Song, Guo-Feng Zhao, Chong Yao, Zi-Kun Ma, Shun-Liang Ding, Xiu-Zhen Ma
Format: Article
Language:English
Published: Hindawi Limited 2018-01-01
Series:Mathematical Problems in Engineering
Online Access:http://dx.doi.org/10.1155/2018/2549456
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spelling doaj-c1ec04513e50494d91342fc2fbcba50e2020-11-25T01:47:50ZengHindawi LimitedMathematical Problems in Engineering1024-123X1563-51472018-01-01201810.1155/2018/25494562549456Study of Nonlinear Characteristics and Model Based Control for Proportional ElectromagnetEn-Zhe Song0Guo-Feng Zhao1Chong Yao2Zi-Kun Ma3Shun-Liang Ding4Xiu-Zhen Ma5College of Power and Energy Engineering, Harbin Engineering University, Harbin 150001, ChinaCollege of Power and Energy Engineering, Harbin Engineering University, Harbin 150001, ChinaCollege of Power and Energy Engineering, Harbin Engineering University, Harbin 150001, ChinaCollege of Power and Energy Engineering, Harbin Engineering University, Harbin 150001, ChinaSchool of Mechanical Engineering, Zhengzhou University, Zhengzhou 450001, ChinaCollege of Power and Energy Engineering, Harbin Engineering University, Harbin 150001, ChinaThe nonlinear characteristics of proportional electromagnet caused by hysteresis bring great difficulties on its accurate position tracking control by current. In order to enhance the practicability and reliability of long stroke electromagnet in case of position sensor fault and improve the position tracking performance during current closed-loop control, experimental investigations on the electromagnet actuator hysteresis characteristics of diesel engine governor are carried out to analyze the system dynamic features and the effects of hysteresis on actuator position tracking performance. It is clear that hysteresis can significantly hinder the accurate position control of the electromagnet actuator. Consequently, the fuel injection will be delayed, which will lead to hysteresis of engine speed control as well as deterioration of engine performance. In this paper, the hysteresis phenomenon of an actuator and its influence on control performance of engine are investigated. The model of proportional electromagnet actuator (PEA) is established and the hysteresis principle is analyzed. Then the inverse model control strategy based on neural network (NN) is proposed to linearize the transfer behavior of electromagnet and compensate for the magnet hysteresis. Rapid control prototyping (RCP) experiment based on MicroAutoBox is further implemented to validate the real-time performance of the proposed control strategy in D6114 diesel engine. The results show that the speed fluctuation (SF) under steady-state conditions (especially under idle speed condition) and the recovery time as well as the overshoot under transient conditions are significantly improved. This makes it possible to develop redundant electromagnet driving control strategy.http://dx.doi.org/10.1155/2018/2549456
collection DOAJ
language English
format Article
sources DOAJ
author En-Zhe Song
Guo-Feng Zhao
Chong Yao
Zi-Kun Ma
Shun-Liang Ding
Xiu-Zhen Ma
spellingShingle En-Zhe Song
Guo-Feng Zhao
Chong Yao
Zi-Kun Ma
Shun-Liang Ding
Xiu-Zhen Ma
Study of Nonlinear Characteristics and Model Based Control for Proportional Electromagnet
Mathematical Problems in Engineering
author_facet En-Zhe Song
Guo-Feng Zhao
Chong Yao
Zi-Kun Ma
Shun-Liang Ding
Xiu-Zhen Ma
author_sort En-Zhe Song
title Study of Nonlinear Characteristics and Model Based Control for Proportional Electromagnet
title_short Study of Nonlinear Characteristics and Model Based Control for Proportional Electromagnet
title_full Study of Nonlinear Characteristics and Model Based Control for Proportional Electromagnet
title_fullStr Study of Nonlinear Characteristics and Model Based Control for Proportional Electromagnet
title_full_unstemmed Study of Nonlinear Characteristics and Model Based Control for Proportional Electromagnet
title_sort study of nonlinear characteristics and model based control for proportional electromagnet
publisher Hindawi Limited
series Mathematical Problems in Engineering
issn 1024-123X
1563-5147
publishDate 2018-01-01
description The nonlinear characteristics of proportional electromagnet caused by hysteresis bring great difficulties on its accurate position tracking control by current. In order to enhance the practicability and reliability of long stroke electromagnet in case of position sensor fault and improve the position tracking performance during current closed-loop control, experimental investigations on the electromagnet actuator hysteresis characteristics of diesel engine governor are carried out to analyze the system dynamic features and the effects of hysteresis on actuator position tracking performance. It is clear that hysteresis can significantly hinder the accurate position control of the electromagnet actuator. Consequently, the fuel injection will be delayed, which will lead to hysteresis of engine speed control as well as deterioration of engine performance. In this paper, the hysteresis phenomenon of an actuator and its influence on control performance of engine are investigated. The model of proportional electromagnet actuator (PEA) is established and the hysteresis principle is analyzed. Then the inverse model control strategy based on neural network (NN) is proposed to linearize the transfer behavior of electromagnet and compensate for the magnet hysteresis. Rapid control prototyping (RCP) experiment based on MicroAutoBox is further implemented to validate the real-time performance of the proposed control strategy in D6114 diesel engine. The results show that the speed fluctuation (SF) under steady-state conditions (especially under idle speed condition) and the recovery time as well as the overshoot under transient conditions are significantly improved. This makes it possible to develop redundant electromagnet driving control strategy.
url http://dx.doi.org/10.1155/2018/2549456
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