Industrial sensors and controls in communication networks : from wired technologies to cloud computing and the internet of things /: from wired technologies to cloud computing and the internet of things. ([2019])
- Record Type:
- Book
- Title:
- Industrial sensors and controls in communication networks : from wired technologies to cloud computing and the internet of things /: from wired technologies to cloud computing and the internet of things. ([2019])
- Main Title:
- Industrial sensors and controls in communication networks : from wired technologies to cloud computing and the internet of things
- Further Information:
- Note: Dong-Seong Kim, Hoa Tran-Dang.
- Authors:
- Kim, Dong Seong
Tran-Dang, Hoa - Contents:
- Intro; Preface; Acknowledgements; Contents; Industrial Control Networks; 1 An Overview on Industrial Control Networks; 1.1 Introduction; 1.2 Architecture of Industrial Control Networks; 1.3 Requirements of Industrial Control Networks; 1.4 Communication Technologies for Industrial Control Networks; 1.4.1 Fieldbuses; 1.4.2 Industrial Ethernet; 1.5 Trends and Issues; 1.6 Conclusions; References; 2 FlexRay Protocol: Objectives and Features; 2.1 Introduction; 2.2 FlexRay System; 2.2.1 Level 1-Network Topology; 2.2.2 Level 2-Interface; 2.2.3 Level 3-CHI and Protocol Engine 2.3 Message Scheduling for FlexRay System2.3.1 FlexRay Static Segment; 2.3.2 FlexRay Dynamic Segment; 2.3.3 Comparison with CAN; 2.4 Verification and Validation; 2.4.1 Computer Simulation for Model Validation; 2.4.2 Formal Verification; 2.5 Software and Hardware; 2.5.1 Software; 2.5.2 Hardware; 2.6 Conclusions; References; 3 Communication Using Controller Area Network Protocol; 3.1 Introduction; 3.2 CAN Protocol Overview; 3.2.1 Physical Layer; 3.2.2 Message Frame Format; 3.2.3 Medium Access Technique; 3.2.4 Error Management; 3.2.5 Implementation; 3.3 Main Features; 3.3.1 Advantages 3.3.2 Performances3.3.3 Determinism; 3.3.4 Dependability; 3.4 Conclusions; References; 4 Distributed Control System for Ship Engines Using Dual Fieldbus; 4.1 Introduction; 4.2 Redundant Distributed Control System; 4.2.1 Modbus Protocol; 4.2.2 CAN Protocol; 4.2.3 Redundancy; 4.3 Implementation and Experimental Test; 4.4 Conclusions;Intro; Preface; Acknowledgements; Contents; Industrial Control Networks; 1 An Overview on Industrial Control Networks; 1.1 Introduction; 1.2 Architecture of Industrial Control Networks; 1.3 Requirements of Industrial Control Networks; 1.4 Communication Technologies for Industrial Control Networks; 1.4.1 Fieldbuses; 1.4.2 Industrial Ethernet; 1.5 Trends and Issues; 1.6 Conclusions; References; 2 FlexRay Protocol: Objectives and Features; 2.1 Introduction; 2.2 FlexRay System; 2.2.1 Level 1-Network Topology; 2.2.2 Level 2-Interface; 2.2.3 Level 3-CHI and Protocol Engine 2.3 Message Scheduling for FlexRay System2.3.1 FlexRay Static Segment; 2.3.2 FlexRay Dynamic Segment; 2.3.3 Comparison with CAN; 2.4 Verification and Validation; 2.4.1 Computer Simulation for Model Validation; 2.4.2 Formal Verification; 2.5 Software and Hardware; 2.5.1 Software; 2.5.2 Hardware; 2.6 Conclusions; References; 3 Communication Using Controller Area Network Protocol; 3.1 Introduction; 3.2 CAN Protocol Overview; 3.2.1 Physical Layer; 3.2.2 Message Frame Format; 3.2.3 Medium Access Technique; 3.2.4 Error Management; 3.2.5 Implementation; 3.3 Main Features; 3.3.1 Advantages 3.3.2 Performances3.3.3 Determinism; 3.3.4 Dependability; 3.4 Conclusions; References; 4 Distributed Control System for Ship Engines Using Dual Fieldbus; 4.1 Introduction; 4.2 Redundant Distributed Control System; 4.2.1 Modbus Protocol; 4.2.2 CAN Protocol; 4.2.3 Redundancy; 4.3 Implementation and Experimental Test; 4.4 Conclusions; References; 5 Implementing Modbus and CAN Bus Protocol Conversion Interface; 5.1 Introduction; 5.2 Modbus and CAN Bus; 5.2.1 Modbus; 5.2.2 CAN Bus; 5.3 Conversion Interface Design; 5.3.1 Hardware Design; 5.3.2 Software Design; 5.4 Conclusions; References 6 MIL-STD-1553 Protocol in High Data Rate Applications6.1 Introduction; 6.2 Related Works; 6.3 MIL-STD-1553 Network Protocol Infrastructure; 6.3.1 MIL-STD-1553 Hardware Elements; 6.3.2 MIL-STD-1553 Protocol Format; 6.3.3 Manchester Encoder/Decoder; 6.3.4 Quality Control Process; 6.4 Comparative Analysis of High-Speed Data Bus Technologies; 6.4.1 Traditional MIL-STD-1553 Architecture; 6.4.2 HyPer-1553TM Data Bus Technology; 6.4.3 Turbo 1553 Approach; 6.4.4 Tools for Testing and Simulation; 6.5 Conclusions and Future Works; References; 7 Research and Design of 1553B Protocol Bus Control Unit 7.1 Introduction7.2 1553B Protocol; 7.2.1 Hardware Characteristics; 7.2.2 Encoding; 7.2.3 Word and Message; 7.2.4 Hierarchical Division; 7.3 BCU Design; 7.3.1 Decoding Unit; 7.3.2 Data Encode Unit; 7.3.3 Command Words Decode Unit; 7.3.4 Send Control Unit; 7.3.5 Status Words Receive Control and Decode Unit; 7.3.6 Address Decode Unit; 7.3.7 Send Overtime Detection Unit; 7.3.8 Error Detection Unit; 7.3.9 DSP Communication Interface; 7.4 Logic Emulation; 7.5 Conclusions; References; Industrial Wireless Sensor Networks; 8 An Overview on Wireless Sensor Networks; 8.1 Introduction … (more)
- Publisher Details:
- Cham, Switzerland : Springer
- Publication Date:
- 2019
- Extent:
- 1 online resource
- Subjects:
- 006.2/5
Wireless sensor networks
Telecommunication systems -- Management
Control theory
Control theory
Telecommunication systems -- Management
Wireless sensor networks
Electronic books - Languages:
- English
- ISBNs:
- 9783030049270
3030049272 - Related ISBNs:
- 9783030049263
3030049264 - Notes:
- Note: Includes bibliographical references and index.
Note: Description based on online resource; title from digital title page (viewed on February 14, 2019). - Access Rights:
- Legal Deposit; Only available on premises controlled by the deposit library and to one user at any one time; The Legal Deposit Libraries (Non-Print Works) Regulations (UK).
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- British Library HMNTS - ELD.DS.381220
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