The content of \"Application Practice of Modern Electrical Control Technology\" is based on the project equipment of the Modern Electrical Control System Installation and Debugging Skills Competition. It starts with the basic control systems that students are more familiar with and transitions to comprehensive control systems. The hardware wiring and drawing in the cases are from simple to complex, and the control requirements are from easy to difficult. The textbook is divided into three chapters, namely basic, advanced and extended, with a total of 13 projects. The basic chapter consists of five basic projects, including the installation and debugging of electrical control systems for ordinary lathes, electric hoists, mixers, blowers and gantry planers. The content includes the introduction of the YL-158GA electrical control technology training device, the use of S7-300 and S7-200SMART to achieve inching and continuous, forward and reverse, star-delta, dual speed and frequency conversion control of the motor, and the use of MCGS to monitor the operating status of the motor; the advanced chapter consists of the installation and composition of electrical control systems for intelligent feeding, label printing, filling and labeling, stereoscopic warehouses and mixing tanks, and the extended chapter consists of the installation and debugging of electrical control systems for warehouse sorting, automatic painting and intelligent stereoscopic garages. Both the advanced and extended chapters are comprehensive control systems, and the content includes the networking of S7-200SMART, S7-300PLC and MCGS controllers, system communication area settings, motion control system configuration, electrical control system programming and human-machine interface design. \"Application and Practice of Modern Electrical Control Technology\" reduces theoretical content and focuses on practical operations. It comprehensively applies what students have learned in terms of common electrical control technology, PLC control technology, fieldbus technology, and advanced configuration technology. The textbook content is related to students\' employment and career. It can be used as a learning textbook for higher vocational students in electrical, electromechanical, and robotics related majors, and as a reference material for undergraduate students in related majors and technical personnel in related industries. Basics Project 1 Installation and debugging of electrical control system for ordinary lathe 1.1 Control requirements 1.2 System scheme design 1.3 System electrical design and installation 1.3.1 Electrical principle analysis 1.3.2 I/O address allocation 1.3.3 System PLC wiring diagram 1.3.4 System installation and wiring 1.4 System software design and debugging 1.4.1 Introduction to S7-200 SMART 1.4.2 PLC program design Project 2 Installation and debugging of electrical control system for electric hoist 2.1 Control requirements 2.2 System scheme design 2.3 System electrical design and installation 2.3.1 Electrical principle analysis 2.3.2 I/O address allocation 2.3.3 System PLC wiring diagram 2.4 System software design and debugging 2.4.1 New project 2.4.2 Hardware configuration 2.4.3 Setting Ethernet communication address 2.4.4 Program writing Project 3 Installation and debugging of electrical control system for mixer 3.1 Control requirements 3.2 System scheme design 3.3 System electrical design and installation3.3.1 Electrical principle analysis3.3.2 I/O address allocation3.3.3 PLC wiring diagram of the system3.4 System software design and debugging3.4.1 MCGS configuration design3.4.2 PLC program designProject 4 Blower electrical control system installation and debugging4.1 Control requirements4.2 Scheme design4.3 System electrical design and installation4.3.1 Electrical principle analysis4.3.2 I/O address allocation4.3.3 PLC wiring diagram of the system4.4 System software design and debugging4.4.1 MCGS configuration design4.4.2 PLC program designProject 5 Planer electrical control system installation and debugging5.1 Control requirements5.2 System scheme design5.3 System electrical design and installation5.3.1 Electrical principle analysis5.3.2 I/O address allocation5.3.3 Inverter multi-speed combination5.3.4 System installation and wiring5.4 System software design and debugging5.4.1 MCGS configuration design 5.4.2 PLC program design improvement project six intelligent feeding electrical control system installation and commissioning 6.1 control requirements 6.2 system scheme design 6.3 system electrical design and installation 6.3.1 electrical principle analysis 6.3.2 I/O address allocation 6.3.3 system installation and wiring 6.4 system software design and commissioning 6.4.1 MCGS configuration design 6.4.2 PLC program design 6.5 project expansion project seven label printing electrical control system installation and commissioning 7.1 control requirements 7.2 system scheme design 7.3 system electrical design and installation 7.3.1 electrical principle analysis 7.3.2 I/O address allocation 7.3.3 system installation and wiring 7.4 system software design and commissioning 7.4.1 MCGS configuration design 7.4.2 PLC program design 7.5 project expansion project eight filling labeling electrical control system installation and commissioning 8.1 control requirements 8.2 system scheme design 8.3 system electrical design and installation 8.3.1 Electrical principle analysis 8.3.2 I/O address allocation 8.3.3 System installation and wiring 8.4 System software design and debugging 8.4.1 MCGS configuration design 8.4.2 PLC program design 8.5 Project expansion project 9 Installation and debugging of electrical control system for three-dimensional warehouse 9.1 Control requirements 9.2 System scheme design 9.3 System electrical design and installation 9.3.1 Electrical principle analysis 9.3.2 I/O address allocation 9.3.3 System installation and wiring 9.4 System software design and debugging 9.4.1 MCGS configuration design 9.4.2 PLC program design 9.5 Project expansion project 10 Installation and debugging of electrical control system for mixing tank 10.1 Control requirements 10.2 System scheme design 10.3 System electrical design and installation 10.3.1 Electrical principle analysis 10.3.2 I/O address allocation 10.3.3 System installation and wiring 10.4 System software design and debugging 10.4.1 MCGS configuration design 10.4.2 PLC program design 10.5 Project expansion Project 11 Warehouse sorting electrical control system installation and commissioning 11.1 Control requirements 11.2 System scheme design 11.3 System electrical design and installation 11.3.1 Electrical principle analysis 11.3.2 I/O address allocation 11.3.3 System installation and wiring 11.4 System software design and commissioning 11.4.1 MCGS configuration design 11.4.2 PLC program design 11.5 Project expansion Project 12 Automatic painting electrical control system installation and commissioning 12.1 Control requirements 12.2 System scheme design 12.3 System electrical design and installation 12.3.1 Electrical principle analysis 12.3.2 I/O address allocation 12.3.3 System installation and wiring 12.4 System software design and commissioning 12.4.1 MCGS configuration design 12.4.2 PLC program design 12.5 Project expansion Intelligent Thirteen Intelligent Temple Garage Electrical Control System Installation and Debugging 13.1 Control Requirements 13.2 System Scheme Design 13.3 System Electrical Design and Installation 13.3.1 Electrical Principle Analysis 13.3.2 I/O Address Allocation 13.3.3 System Installation and Wiring 13.4 System Software Design and Debugging 13.4.1 MCGS Configuration Design 13.4.2 PLC Program Design 13.5 Project Expansion Reference Books
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