Advanced Metaverse Wireless Communication Systems
Houbing Herbert Song
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Add to basketSold by AHA-BUCH GmbH, Einbeck, Germany
AbeBooks Seller since August 14, 2006
Condition: New
Quantity: 2 available
Add to basketNeuware - The Metaverse concept is self-sustainable and facilitates the seamless operation of wireless systems at minimal operational costs for the efficient management of wireless system resources. It is gaining widespread popularity using technologies such as advanced optimization theory, digital twins, virtual reality, machine learning, and blockchain. This book gives a comprehensive overview of advanced metaverse wireless communication systems including theoretical analysis, technology enablers, novel system architecture design, new implementation methodologies, emerging application scenarios, experimental frameworks, as well as reliability, security, privacy, technical and ethical considerations, open challenges and future perspectives.A comprehensive overview of advanced metaverse wireless communication systems including theoretical analysis, technology enablers, novel system architecture design, new implementation methodologies, emerging application scenarios, experimental frameworks, as well as reliability, security, and privacy.
Seller Inventory # 9781839539077
Billions of wireless applications are proliferating in the global space. The novel wireless systems to support these applications need to satisfy several user-defined metrics to ensure quality of physical experience, quality of service, low latency and ultra-high reliability. Enabling technologies are being developed in order to meet these rate-hungry requirements.
Managing these complex wireless and computing resources requires a proactive analysis of the core wireless systems, especially in the metaverse, which is a virtual model of the physical world systems. The metaverse concept is intended to be self-sustainable and facilitates the seamless operation of wireless systems at minimal operational costs for the efficient management of wireless system resources. It is gaining widespread popularity using technologies such as advanced optimization theory, digital twins, virtual reality, machine learning, and blockchain.
This book presents a comprehensive overview of advanced metaverse wireless communication systems. The authors highlight the technology enablers and critical design aspects, emphasize how the metaverse can support wireless systems but also show how wireless systems can empower the metaverse. They address critical concerns covering theoretical analysis, novel system architecture design and new implementation methodologies, emerging application scenarios, experimental frameworks, and reliability, security, privacy, technical, and ethical considerations, viable solutions, as well as open challenges, the social impacts of the metaverse concept and future perspectives.
Offering a range of international perspectives from researchers in the field, this book is intended for researchers from academia and industry, and scientists, engineers, lecturers and advanced students in the fields of wireless and mobile communications, networking, computing, data science, AI/ML/DL, multimedia, haptics, sensing, CPS and immersive technologies.
Agbotiname Lucky Imoize is a lecturer in the Department of Electrical and Electronics Engineering at the University of Lagos, Nigeria. His research interests cover the fields of 6G wireless communication, wireless security systems, and artificial intelligence. He is a Fulbright research fellow, the vice chair of the IEEE Communication Society Nigeria chapter, and a registered engineer with the Council for the Regulation of Engineering in Nigeria. He is a senior member of IEEE.
Webert Montlouis is a chief scientist with the Johns Hopkins University, Baltimore, USA, where he shares his time between the Applied Physics Laboratory (APL) and the Electrical and Computer Engineering department. His research interests are in the areas of communications, adaptive signal processing, robust tracking and localization, algorithm development, system-on-chip implementation of DSP algorithms, networking and antenna array signal processing. He is a Fellow of IEEE.
Houbing Herbert Song is a professor in the Department of Information Systems and the director of the Security and Optimization for Networked Globe Laboratory (SONG Lab) at the University of Maryland, Baltimore County (UMBC), USA. His research interests include cyber-physical systems and internet of things, cybersecurity and privacy, AI, machine learning and big data analytics. He is an ACM distinguished member, and a fellow of IEEE.
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