Resource Optimization in Wireless Communications,
Edition 1 Fundamentals, Algorithms, and ApplicationsEditors: By Lie-Liang Yang, MSc, PhD, Jia Shi, PhD, Kai-Ten Feng, PhD, Li-Hsiang Shen, PhD, Sau-Hsuan Wu, PhD and Ta-Sung Lee, PhD
Publication Date:
20 Jan 2025
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Description
Resource Optimization in Wireless Communications: Fundamentals, Algorithms, and Applications provides an easy-to-understand overview of the fundamentals of resource optimization, along with the latest algorithms and applications for emerging 5G, and beyond, wireless systems offering a variety of services. Additionally, it covers the principles and resource optimization of some systems expected in 6G.This book is suitable for courses in wireless communications that cover the principles of multicarrier and OFDM, the theory of resource allocation, power allocation, and subcarrier allocation, as well as the principles and optimization of OTFS, ISAC, reflective intelligent surface (RIS)-assisted mmWave, and user-centric cell-free wireless systems. It is also an ideal self-study reference text for researchers and industry engineers who wish to deepen their knowledge while researching and developing wireless systems for 6G.
Key Features
- Provides a comprehensive introduction to resource optimization in wireless communications, laying a strong foundation for researchers developing cutting-edge resource-allocation algorithms.
- Includes a wide variety of resource-optimization algorithms that are ready for direct application in both research and design.
- Accompanied by practical examples to enhance understanding, making it ideal for self-study and hands-on practice.
- Explores resource optimization across a broad spectrum of 5G/6G wireless systems.
- Features numerous illustrations that effectively demonstrate the performance capabilities of various resource-allocation algorithms.
About the author
By Lie-Liang Yang, MSc, PhD, University of Southampton, UK; Jia Shi, PhD, Xidian University, China; Kai-Ten Feng, PhD, National Yang Ming Chiao Tung University; Li-Hsiang Shen, PhD, National Central University, Taiwan; Sau-Hsuan Wu, PhD, National Yang Ming Chiao Tung University and Ta-Sung Lee, PhD, National Yang Ming Chiao Tung University, Taiwan
1. Multicarrier Communications and Orthogonal Frequency-Division Multiplexing
2. General Theory for Resource-Allocation in Wireless Communications
3. Power-Allocation
4. Subcarrier Allocation
5. Beam and Channel Acquisitions in mmWave Systems
6. Beam-Based Resource-Allocation in MIMO-OFDM Networks
7. Game-Theory Assisted Resource-Allocation
8. Machine/Deep Learning Based Resource-Allocation
9. Deep-reinforcement-learning-aided resource allocation in ultradense networks
10. Resource-Allocation in Multicell OFDMA Systems
11. Distributed Resource-Allocation in Multicell MC/DS-CDMA Systems
12. Resource Allocation for Ultra-Reliable Low-Latency Communication
13. Resource-Allocation in Massive Machine Type Communications
14. Resource Optimization in Reflective Intelligent Surface (RIS)-Aided mmWave Systems
15. Signaling and Optimization in Orthogonal Time-Frequency-Space (OTFS) and Related Schemes
16. Optimization in MIMO Integrated Sensing and Communications (ISAC)
17. Optimization in User-Centric Cell-Free (UCCF) Wireless Networks
2. General Theory for Resource-Allocation in Wireless Communications
3. Power-Allocation
4. Subcarrier Allocation
5. Beam and Channel Acquisitions in mmWave Systems
6. Beam-Based Resource-Allocation in MIMO-OFDM Networks
7. Game-Theory Assisted Resource-Allocation
8. Machine/Deep Learning Based Resource-Allocation
9. Deep-reinforcement-learning-aided resource allocation in ultradense networks
10. Resource-Allocation in Multicell OFDMA Systems
11. Distributed Resource-Allocation in Multicell MC/DS-CDMA Systems
12. Resource Allocation for Ultra-Reliable Low-Latency Communication
13. Resource-Allocation in Massive Machine Type Communications
14. Resource Optimization in Reflective Intelligent Surface (RIS)-Aided mmWave Systems
15. Signaling and Optimization in Orthogonal Time-Frequency-Space (OTFS) and Related Schemes
16. Optimization in MIMO Integrated Sensing and Communications (ISAC)
17. Optimization in User-Centric Cell-Free (UCCF) Wireless Networks
ISBN:
9780443300929
Page Count:
498
Retail Price (USD)
:
Researchers and graduate students in wireless communications, R&D engineers in industry.