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本書可作為控制理論與控制工程類專業研究生或自動化與測控類專業本科生相關雙語課程教材或教學參考書,也可作為工程技術人員的參考資料。
目次
1.1 Fundamentals for Process control
1.1.1 Basic industrial control system
1.1.2 PID Algorithms
1.1.3 Modifications of the PID Algorithm
1.1.4 PID Parameter tuning
1.1.5 Configuration of PID
1.1.6 Advanced process control (APC)
1.2 Fundamentals for Instruments
1.2.1 Measuring devices
1.2.2 Controllers
1.2.3 Actuators
1.2.4 Other instruments
1.3 Techniques for Distributed systems
1.3.1 Definitions of distributed systems
1.3.2 Goals for distributed systems
1.3.3 Types of distributed systems
1.3.4 The main techniques used in distributed systems
1.4 Distributed control systems (DCS)
1.4.1 Definitions of distributed control systems
1.4.2 The Structure of DCS
1.4.3 Characteristics of DCS
1.4.4 Some typical DCS and their architecture
Summary
Problems
Chapter 2 Distributed Control Systems (DCS)
2.1 Process Control Unit (PCU)
2.1.1 Hardware of PCU
2.1.2 Software of PCU
2.2 Engineering Work Station (EWS)
2.2.1 System Planning
2.2.2 Configuration
2.3 Operation Station (or Man Machine Interface, MMI)
2.3.1 Display of Process Parameters
2.3.2 Operator-Interface geometry or ergonomics
2.3.3 Function of MMI in DCS
2.3.4 The development of displayers
Summary
Problems
Chapter 3 SCADAs, PLCs, and Intelligent Instruments
3.1 SCADAs
3.1.1 Introduction of SCADA
3.1.2 Hardware of SCADA
3.1.3 Software of SCADA
3.2 PLCs
3.2.1 The fundamentals of logic control techniques
3.2.2 Hardware of PLC
3.2.3 Software of PLC
3.3 Intelligent Instruments
3.3.1 Single-Loop Controllers (SLC)
3.3.2 Data Acquisition Units (DAQ)
Summary
Problems
Chapter 4 Communications for Distributed Systems
4.1 Basic concept for communications
4.1.1 Some nomenclatures for communications
4.1.2 The representation of binary number
4.1.3 Error control
4.1.4 Channel
4.1.5 Modem
4.1.6 Multiplexers
4.2 Networks
4.2.1 Network topologies
4.2.2 Communication Protocol and OSI Model
4.2.3 Network components
4.3 OPC Techniques
4.3.1 Introduction
4.3.2 OPC Fundamentals
4.3.3 OPC Architecture
Summary
Problems
Chapter 5 Reliability Aspects
5.1 Performance Specifications of Reliability
5.2 System Reliability Analyze
5.2.1 System Reliability Model
5.2.2 System Reliability Test
5.3 Reliability consideration in Distributed Systems
5.3.1 Quality management
5.3.2 Fault containment technology
5.3.3 Redundancy
Summary
Problems
Chapter 6 Fieldbus Devices and Systems
6.1 Characteristics and Structures of Fieldbus Control System (FCS)
6.1.1 Definition
6.1.2 FCS Features and Architectures
6.1.3 Structures of FCS
6.1.4 Fieldbus Category
6.2 Some typical fieldbuses
6.2.1 AS-Interface
6.2.2 CAN bus
6.2.3 LonWorks
6.2.4 Interbus
6.2.5 Profibus
6.2.6 ControlNet
6.2.7 CC-Link
6.2.8 Foundation Fieldbus (FF)
6.2.9 HART
6.3 International Standard for Fieldbus
6.4 Communication Mechanism in Fieldbus
6.4.1 OSI Model and Fieldbus
6.4.2 Foundation fieldbus Technology
6.4.3 Profibus Technology
6.4.4 Standardization of Fieldbus Technology
6.5 Fieldbus Device
6.5.1 Fieldbus Instrumentations
6.5.2 Profibus-DP Devices
Summary
Problems
Chapter 7 Engineering Aspects
7.1 Engineering Design for Process Control
7.1.1 Design Procedure
7.1.2 Piping and Instrument Drawing (P&ID)
7.1.3 Instrument Loop Diagrams
7.1.4 SAMA Diagrams
7.2 Configuration
7.2.1 Some Important Blocks in Foundation Fieldbus Control System
7.2.2 Control strategy configuration
Summary
Problems
References
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