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书名 动态博弈及其在下一代无线通信网络中的应用(英文版)
分类 科学技术-工业科技-电子通讯
作者 许海涛
出版社 西南交通大学出版社
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简介
内容推荐
本书主要介绍在动态博弈及其在无线通信领域关键技术的最新研究成果,具体主要包括四方面内容:动态博弈在通信网络中的应用、动态博弈在无线网络中的应用、动态博弈在卫星通信中的应用以及动态博弈在信息安全领域的应用。本书针对以上四个研究方向,对团队的研究成果进行了梳理、总结,以为广大从事动态博弈及下一代无线通信领域资源管理等相关领域的学者提供了借鉴,为下一代无线通信网络技术的发展提供了支持。本书适合于IT领域从事无线网络、博弈论等行业的学者使用,同时可作为相关领域研究生的指导用书。
目录
PART I: Dynamic Game in communication netowrk
1 A Differential Game Model of Automatic Load Balancing in
LTE Networks
1.1 Introduction
1.2 Related Works
1.3 Automatic Load Balancing Architecture
1.4 System Model
1.5 Nash Equilibrium of the Game
1.6 Automatic Load Balancing Scheme
1.7 Numerical Simulation
1.8 Conclusions
References
2 Optimal Power Control in Cooperative Relay Networks
Based on a Differential Game
2.1 Introduction
2.2 System Model and Problem Statement
2.3 Non-cooperative Optimal Power Control
2.4 Performance Evaluation
2.5 Conclusions
Appendix
References
3 Load Balancing Algorithm of Ultra-Dense Networks: a
Stochastic Differential Game based Scheme
3.1 Introduction
3.2 System Model
3.3 Load Balancing Algorithm
3.4 Performance Evaluations
3.5 Conclusions
References
4 Differential Game Based Link Resource Management for Next
Generation Optical Network
4.1 Introduction
4.2 System Model
4.3 Differential Game Formulation
4.4 Numerical Simulations
4.5 Conclusions
Appendix
References
PART II: Dynamic Game in wireless network
5 Differential Game based Cooperative Power Control in
Cognitive Radio Networks
5.1 Introduction
5.2 Related Works
5.3 System Model
5.4 Cooperative Solutions
5.5 Numerical Simulations
5.6 Summary and Conclusion
References
6 Optimal Power Control in Wireless Powered Sensor
Networks: A Dynamic Game-Based Approach
6.1 Introduction
6.2 System Model and Problem Formulation
6.3 Game Analysis
6.4 Numerical Simulations
6.5 Conclusions
Appendix A
Appendix B
References
7 Cooperative Dynamic Game based Optimal Power Control
in Wireless Sensor Network Powered by RF Energy
7.1 Introduction
7.2 System Model and Problem Formulation
7.3 Solutions and Analysis
7.4 Numerical Results
7.5 Conclusions
References
8 Resource Allocation in Wireless Powered loT System: A
Mean Field Stackelberg Game-Based Approach
8.1 Introduction
8.2 Related Works
8.3 System Model and Problem Formulation
8.4 Game Analysis and Implementation Algorithm
8.5 Performance Evaluation
8.6 Conclusions
References
PART III: Dynamic Game in satellite network
9 A Stackelberg Differential Game based Bandwidth Allocation
in Satellite Communication Network
9.1 Introduction
9.2 System Model
9.3 Game Analysis
9.4 Numerical Simulations
9.5 Conclusions
Appendix
References
10 A Non-cooperative Differential Game Model for Frequency
Reuse based Channel Allocation in Satellite Networks
10.1 Introduction
10.2 Related Works
10.3 System Model and Problem Statement
10.4 Dynamic Allocation Scheme based on Feedback Nash Equilibrium
10.5 Performance Evaluation
10.6 Conclusions
References
PART IV: Dynamic Game in security
11 Resource Allocation for Network Security Risk Assessment:
a Non-cooperative Differential Game Based Approach
11.1 Introduction
11.2 System Model
11.3 Solutions
11.4 Simulations
11.5 Conclusions
References
12 Stackelberg Dynamic Game-Based Resource Allocation in
Threat Defense for Internet of Things
12.1 Introduction
12.2 System Model and Problem Formulation
12.3 Game Analysis
12.4 Numerical Simulations
12.5 Conclusions
Appendix A
Appendix B
References
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