Realization of optimization design of electromechanical integration PLC program system based on 3D model

A three-dimensional simulation model of the electromechanical control system was built using the fuzzy control proportional–integral–derivative (PID) adjustment algorithm after an automatic electromechanical control system based on programmable logic controller (PLC) technology was optimized to achi...

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Main Authors: Zhang Lili, Zhang Chuanbao, Wang Peng, Shabaz Mohammad, M. G. Skanda, C. Vijayalakshmi, Kishore Kakarla Hari
Format: Article
Language:English
Published: De Gruyter 2023-03-01
Series:Nonlinear Engineering
Subjects:
Online Access:https://doi.org/10.1515/nleng-2022-0252
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author Zhang Lili
Zhang Chuanbao
Wang Peng
Shabaz Mohammad
M. G. Skanda
C. Vijayalakshmi
Kishore Kakarla Hari
author_facet Zhang Lili
Zhang Chuanbao
Wang Peng
Shabaz Mohammad
M. G. Skanda
C. Vijayalakshmi
Kishore Kakarla Hari
author_sort Zhang Lili
collection DOAJ
description A three-dimensional simulation model of the electromechanical control system was built using the fuzzy control proportional–integral–derivative (PID) adjustment algorithm after an automatic electromechanical control system based on programmable logic controller (PLC) technology was optimized to achieve the practical use of electromechanical program control. First, the hardware of the electromechanical control system is discussed and designed. The findings demonstrate the viability of the mechanical and electrical integration PLC program optimization solution based on three-dimensional (3D) model. The system has a higher control and management efficiency, which is 30% greater than that of the conventional system. The mechatronic manufacturing system’s continuous operation efficiency enhancement can significantly lower the investment costs and boost the financial gains of industrial organizations. Traditional systems have a control and management efficiency of around 30%, but automatic electromechanical control systems based on PLC technology and created using 3D models have a control and management efficiency between 60 and 70%.
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spelling doaj.art-5886310921c54d6ca7f4dd965e7bd7b82023-04-11T17:07:18ZengDe GruyterNonlinear Engineering2192-80292023-03-0112110233510.1515/nleng-2022-0252Realization of optimization design of electromechanical integration PLC program system based on 3D modelZhang Lili0Zhang Chuanbao1Wang Peng2Shabaz Mohammad3M. G. Skanda4C. Vijayalakshmi5Kishore Kakarla Hari6Tangshan Polytechnic College, TangshanHebei, 063299, ChinaTangshan Polytechnic College, TangshanHebei, 063299, ChinaTangshan Polytechnic College, TangshanHebei, 063299, ChinaModel Institute of Engineering and Technology, Jammu, J&K, IndiaDepartment of Industrial and Production Engineering, SJCE, JSS Science and Technology University, Mysore, IndiaPanimalar Engineering College, Chennai, Tamil Nadu, IndiaDepartment of Electronics and Communication Engineering, Koneru Lakshmaiah Education Foundation, Vaddeswaram, Guntur, Andhra Pradesh, IndiaA three-dimensional simulation model of the electromechanical control system was built using the fuzzy control proportional–integral–derivative (PID) adjustment algorithm after an automatic electromechanical control system based on programmable logic controller (PLC) technology was optimized to achieve the practical use of electromechanical program control. First, the hardware of the electromechanical control system is discussed and designed. The findings demonstrate the viability of the mechanical and electrical integration PLC program optimization solution based on three-dimensional (3D) model. The system has a higher control and management efficiency, which is 30% greater than that of the conventional system. The mechatronic manufacturing system’s continuous operation efficiency enhancement can significantly lower the investment costs and boost the financial gains of industrial organizations. Traditional systems have a control and management efficiency of around 30%, but automatic electromechanical control systems based on PLC technology and created using 3D models have a control and management efficiency between 60 and 70%.https://doi.org/10.1515/nleng-2022-02523d modelplcmechatronics
spellingShingle Zhang Lili
Zhang Chuanbao
Wang Peng
Shabaz Mohammad
M. G. Skanda
C. Vijayalakshmi
Kishore Kakarla Hari
Realization of optimization design of electromechanical integration PLC program system based on 3D model
Nonlinear Engineering
3d model
plc
mechatronics
title Realization of optimization design of electromechanical integration PLC program system based on 3D model
title_full Realization of optimization design of electromechanical integration PLC program system based on 3D model
title_fullStr Realization of optimization design of electromechanical integration PLC program system based on 3D model
title_full_unstemmed Realization of optimization design of electromechanical integration PLC program system based on 3D model
title_short Realization of optimization design of electromechanical integration PLC program system based on 3D model
title_sort realization of optimization design of electromechanical integration plc program system based on 3d model
topic 3d model
plc
mechatronics
url https://doi.org/10.1515/nleng-2022-0252
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AT mgskanda realizationofoptimizationdesignofelectromechanicalintegrationplcprogramsystembasedon3dmodel
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