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The attachment is: Book "Distributed Control Systems and Industrial Control Networks". This book mainly introduces the principles and applications of industrial control systems and networks such as distributed control systems and field buses. Systematically introduces the hardware and software architecture of the distributed control system, and discusses in detail the hardware and software configuration and specific industrial applications of on-site control stations, operating stations, engineering stations and other equipment through specific engineering projects. In addition, several other commonly used distributed control systems, field bus control systems and emergency stop control systems are briefly introduced based on industrial applications.
Contents Chapter 1 Introduction 1.1 Basic concepts of distributed control systems and industrial control networks 1.2 Overview of the development of distributed control systems 1.3 Characteristics of distributed control systems and industrial control networks 1.3.1 Characteristics of distributed control systems 1.3.2 Characteristics of industrial control networks 1.4 Development trends of distributed control systems and industrial control networks 1.4.1 Informatization and flattening 1.4.2 Networking 1.5 Comparison of PLC, DCS, and FCS control systems 1.5.1 Basic points of the three major control systems 1.5.2 Differences between FCS and DCS 1.5.3 Integration between PLC, DCS and FCS Chapter 2 Basic knowledge of distributed control systems and industrial control networks 2.1 Structure of distributed control systems and industrial control networks 2.1.1 Structure of distributed control systems 2.1.2 Structure of industrial control networks 2.2 Configuration software for distributed control systems and industrial control networks 2.2.1 Commonly used configuration software for distributed control systems 2.2.2 Functions and uses of configuration software 2.2.3 Configuration software for industrial control networks 2.3 Communication networks for distributed control systems and industrial control networks 2.3.1 Communication networks for distributed control systems 2.3.2 Communication networks for industrial control networks 2.3.3 Classification of communication equipment 2.3.4 Composition of communication system Chapter 3 WebFieldJX-300XP distributed control system 3.1 JX-300XP system overview 3.1.1 Overall structure of the system 3.1.2 System characteristics 3.1.3 System scale 3.1.4 Several common concepts 3.2 Field control station hardware 3.2.1 Cabinet 3.2.2 Cage 3.2.3 Terminal board 3.2.4 Power supply 3.2.5 System cards 3.3 Operation station hardware 3.4 Network hardware 3.4.1 Information management network 3.4.2 Process information network (C network) 3.4.3 Process control network SCnet II (A network, B network) 3.4.4 Control bus (SBUS network) 3.4.5 Network address setting and installation 3.5 Hardware selection and configuration example introduction 3.5.1 Card selection 3.5.2 Hardware installation 3.6 System configuration software 3.6.1 User authorization management software (SCReg) 3.6.2 System configuration software (SCKey) 3.6.3 Secondary calculation configuration software (SCTask) 3.6.4 Flowchart production software (SCDrawEx) 3.6.5 Report production software (SCFormEx) 3.6.6 Graphical programming software (SCControl) 3.6.7 Language programming software (SCLang) 3.6.8 Real-time monitoring software (AdvanTrol) 3.7 Configuration project requirements 3.7.1 Process introduction 3.7.2 Project requirements 3.7.3 Monitoring screen requirements 3.8 System configuration 3.8.1 System software installation 3.8.2 System configuration 3.8.3 Flow chart production 3.8.4 Report production 3.8.5 Operation team screen allocation 3.8.6 Saving and compilation of configuration 3.8.7 Configuration transfer and 3.9 Real-time monitoring operation 3.9.1 Monitoring operation precautions 3.9.2 Starting the real-time monitoring software 3.9.3 Screen operation 3.10 System debugging and maintenance 3.10.1 System debugging 3.10.2 System maintenance Chapter 4 ECS-700 distributed control system 4.1 System overview 4.1.1 Overall system structure 4.1.2 System domain management 4.1.3 System scale 4.2 System hardware 4.2.1 Control node 4.2.2 Operation node 4.2.3 Communication network 4.3 System configuration 4.3.1 System configuration software 4.3.2 System configuration 4.3.3 Compilation and 4.4 Application of ECS-700 system in sour water stripping unit 4.4.1 Overview of stripping unit 4.4.2 Process control flow chart 4.4.3 System configuration 4.4.4 Control Plan Chapter 5 Honeywell Distributed Control System 5.1 TDC-3000 System Overview 5.1.1 TDC-3000SSC 5.1.2 TDC-3000BASIC 5.1.3 TDC-3000LCN (LocalControlNetworkl 5.1.4 TDC-3000UCN 5.1.5 MICROTDC 5.1.6 New generation intelligent transmitter 5.2 TPS/PKS system overview 5.2.1 TPS system overview 5.2.2 ExperionPKS system overview 5.3 Application of ExperionPKS in the production process 5.3.1 Introduction to the production industry 5.3.2 Scheme design 5.3.3 ExperionPKS system configuration 5.3.4 Main control loop analysis Chapter 6 Japan Yokogawa distributed control system 6.1 System composition and characteristics 6.1.1 System composition 6.1.2 System characteristics 6.2 Hardware equipment 6.2.1 Field control station (FCS) 6.2.2 Human-machine interface station (HIS) 6.2.3 Communication network 6.3 System configuration 6.3.1 Engineering environment 6.3.2 System configuration example 6.4 System specifications Chapter 7 Other distributed control systems 7.1 I/ASeries distributed control system 7.1.1 Overview 7.1.2 I/ASeries system hardware structure 7.1.3 I/ASeries system network structure 7.1.4 I/ASeries system software structure 7.2 DeltaV distributed control system 7.2.1 DeltaV system overview 7.2.2 DeltaV system hardware composition 7.2.3 DeltaV system software Chapter 8 Fieldbus control system 8.1 Basic concept of fieldbus 8.2 CAN bus 8.2.1 CAN bus overview 8.2.2 CAN technical specifications 8.2.3 CAN communication controller 8.3 Foundation fieldbus FF 8.3.1 FF bus overview 8.3.2 Communication reference model of FF bus 8.3.3 Structure of H1 bus protocol data 8.3.4 FF bus protocol 8.3.5 Transmission media and topology of H1 network segment 8.4 PROFIBUS bus 8.4.1 PROFIBUS overview 8.4.2 Main components of PROFIBUS bus technology 8.4.3 PROFIBUS technology 8.4.4 PROFIBUS regulations 8.4.5 PROFIBUS bus network topology 8.5 LonWorks control network 8.6 PLC network system 8.6.1 PLC network topology 8.6.2 PLC network characteristics 8.6.3 PLC network industry standards 8.7 Introduction to Micr0830 control network 8.7.1 Micr0830 programmable controller hardware characteristics 8.7.2 I/O configuration of Mier0830 programmable controller 8.7.3 External AC power supply of Micr0830 controller Chapter 9 Emergency Stop Control System 9.1 Overview 9.1.1 Definition of Emergency Stop System (ESD) 9.1.2 Classification of ESD 9.1.3 Characteristics of ESD 9.2 Composition of ESD 9.2.1 Composition of ESD system 9.2.2 Difference between ESD and DCS 9.2.3 ESD system configuration plan 9.3 Risk assessment and determination of safety function ESD level 9.3.1 Several related concepts 9.3.2 DINV, 19250/IEC61508 standard risk analysis diagram 9.4 Common terms for ESD safety instrumented systems 9.4.1 Failure (Failure) 9.4.2 Availability (Availability) 9.4.3 Reliability (Reliability) 9.4.4 Robustness (Integricy) 9.4.5 Redundancy and redundant systems 9.4.6 Redundant logic voting method 9.4.7 Error redundancy, error redundancy technology and error redundancy systems 9.4.8 Fail-safety 9.4.9 Failure performance degradation 9.5 Introduction to Tricon system 9.5.1 System composition 9.5.2 System configuration 9.5.3 Features of Tricon system Appendix 1 Heating furnace measuring point list Appendix 2 Flow chart menu command list Appendix 3 Operation button description list Appendix 4 RIO card Appendix 5 FIO card reference
Distributed Control System (DCS) Design and Application Examples (2nd Edition)
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