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E-raamat: Control Strategies and Co-Design of Networked Control Systems: Considering Time Delay Effects

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This book presents Networked Control System (NCS) as a particular kind of a real-time distributed system (RTDS), composed of a set of nodes, interconnected by a network, and able to develop a complete control process. It describes important parts of the control process such as sensor and actuator activities, which rely on a real-time operating system, and a real-time communication network. As the use of common bus network architecture introduces different forms of uncertainties between sensors, actuators, and controllers, several approaches such as reconfigurable systems have been developed to tackle this problem. Moreover, modeling NCS is a challenging procedure, since there are several non-linear situations, like local saturations, uncertain time delays, dead-zones, or local situations, it is necessary to deal with. The book describes a novel strategy for modelling and control based on a fuzzy control approach and codesign strategies.
1 Introduction to Networked Control Systems
1(24)
1.1 Basics of Networked Control Systems
1(2)
1.2 Sources of Uncertainties
3(2)
1.3 Communication Methodologies
5(1)
1.4 Control Methodologies
6(3)
1.5 Co-Design Methodologies
9(2)
1.6 Time Delays Modelling
11(6)
1.7 Maximum Allowable Transfer Interval
17(1)
1.8 Organization of the Book
18(1)
References
18(7)
2 Modelling of Networked Control Systems
25(16)
2.1 Time Delay Model
25(3)
2.2 Adaptive Fuzzy Model
28(2)
2.3 Sampling Frequency Model
30(2)
2.4 Control-Scheduling Codesign Model
32(4)
2.5 Neuro-Fuzzy Identification
36(3)
2.6 Concluding Remarks
39(1)
References
39(2)
3 Distributed Systems Modelling
41(42)
3.1 Classical Distributed Systems
41(3)
3.2 Classical Description
44(11)
3.3 Distributed Systems Changing Methodologies
55(4)
3.4 Dynamic Representation of Distributed Systems
59(13)
3.5 The Effects of Time Delays
72(7)
3.6 Concluding Remarks
79(1)
References
80(3)
4 Design of Networked Control System
83(22)
4.1 Classical Approaches
83(2)
4.2 Adaptive Fuzzy Control
85(9)
4.3 Sampling Frequency Control
94(2)
4.4 Control--Scheduling Codesign
96(5)
4.5 Concluding Remarks
101(1)
References
102(3)
5 Control Design Considering Mobile Computing
105(28)
5.1 Dynamic Behaviour onto Real Time
105(14)
5.2 Consensus and Routing Algorithms
119(2)
5.3 Computer Network Design
121(8)
5.4 Control Design Using Local Mobile Conditions
129(2)
5.5 Concluding Remarks
131(1)
References
131(2)
6 Applications
133(38)
6.1 Case Studies
133(4)
6.2 Adaptive Fuzzy Control
137(15)
6.3 Sampling Frequency Application
152(5)
6.4 2-DOF Helicopter System Codesign
157(13)
6.5 Concluding Remarks
170(1)
References
170(1)
7 Conclusions
171(4)
Glossary 175