Opportunistic Networks (eBook, ePUB)
Fundamentals, Applications and Emerging Trends
Redaktion: Verma, Anshul; Woungang, Isaac; Dhurandher, Sanjay Kumar; Verma, Pradeepika
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Opportunistic Networks (eBook, ePUB)
Fundamentals, Applications and Emerging Trends
Redaktion: Verma, Anshul; Woungang, Isaac; Dhurandher, Sanjay Kumar; Verma, Pradeepika
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This book provides theoretical, algorithmic, simulation, and implementation-based research developments related to fundamentals, applications, and emerging research trends in opportunistic networks.
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This book provides theoretical, algorithmic, simulation, and implementation-based research developments related to fundamentals, applications, and emerging research trends in opportunistic networks.
Dieser Download kann aus rechtlichen Gründen nur mit Rechnungsadresse in A, B, BG, CY, CZ, D, DK, EW, E, FIN, F, GR, HR, H, IRL, I, LT, L, LR, M, NL, PL, P, R, S, SLO, SK ausgeliefert werden.
Produktdetails
- Produktdetails
- Verlag: Taylor & Francis
- Seitenzahl: 330
- Erscheinungstermin: 18. August 2021
- Englisch
- ISBN-13: 9781000429770
- Artikelnr.: 62113366
- Verlag: Taylor & Francis
- Seitenzahl: 330
- Erscheinungstermin: 18. August 2021
- Englisch
- ISBN-13: 9781000429770
- Artikelnr.: 62113366
- Herstellerkennzeichnung Die Herstellerinformationen sind derzeit nicht verfügbar.
Dr. Anshul Verma received M.Tech. and Ph.D. degrees in Computer Science & Engineering from ABV-Indian Institute of Information Technology and Management Gwalior, India in 2011 and 2016, respectively. He has done Post-doctorate from Indian Institute of Technology Kharagpur, India in 2017. Currently, he is serving as Assistant Professor in Department of Computer Science, Institute of Science, Banaras Hindu University Varanasi, India. He has also serve as faculty in Computer Science & Engineering at Motilal Nehru National Institute of Technology (MNNIT) Allahabad and National Institute of Technology (NIT) Jamshedpur, India, from 2015 to 2017. His research interests include Opportunistic networks, Mobile ad-hoc networks, Distributed systems, Formal verification, and Mobile computing. He is serving as the Editor of Journal of Scientific Research, BHU, Varanasi, India. Dr. Pradeepika Verma received her Ph.D. degree in Computer Science & Engineering from Indian Institute of Technology (ISM) Dhanbad, India, in 2020. She has received M.Tech in Computer Science & Engineering from Banasthali University, Rajasthan, India, in 2013. Currently, she is working as Assistant Professor in Department of Computer Science & Engineering, Pranveer Singh Institute of Technology, Kanpur, India. Prior to this, she has worked as faculty in Department of Computer Application at Institute of Engineering and Technology, Lucknow, India. Her current research interests include Opportunistic networks, Natural Language Processing, Optimization Approaches, and Information Retrieval. Prof. Sanjay Kumar Dhurandher received the M. Tech. and Ph.D. Degrees in Computer Sciences from the Jawaharlal Nehru University, New Delhi, India. He is presently working as Professor and Head in the Division of Information Technology, Netaji Subhas Institute of Technology (NSIT), University of Delhi, India. He is also the Head of the Advanced Centre CAITFS, Division of Information Technology, NSIT, University of Delhi. Prior to this, from 1995 to 2000 he worked as a Scientist/Engineer at the Institute for Plasma Research, Gujarat, India which is under the Department of Atomic Energy, India. His current research interests include wireless ad-hoc networks, sensor networks, computer networks, opportunistic networks, network security and Underwater Sensor Networks. He is serving as the Associate Editor of Wiley¿s International Journal of Communication Systems. Prof. Isaac Woungang received the M.A.Sc. and Ph.D. degrees in Mathematics from the University of Aix-Marseille II and University of South, Toulon & Var, France, in 1990 and 1994 respectively. He joined the Department of Computer Science at Ryerson University in 2002 and was promoted to Full Professor in 2014. He served the Department as Associate Chair, Undergraduate Program Director (2013-2014 & 2016-2018), Interim Graduate Program Director (Jan 2011-Sept. 2011) and Coop Program Coordinator (2006-2018). During his sabbatical (Jan. 2009-June 2009 and Jan 2016-Apr. 2016), he was a Visiting Professor at National Ilan University, Taiwan, R.O. C. and Fukuoka Institute of Technology, Japan, respectively. He leads the Distributed Applications and Broadband NEtworks Laboratory (DABNEL) research group. His research interests include radio resource management, computer security, heterogeneous networks, computational intelligence and machine learning applications, performance modelling, analysis and optimization. He served as Editor for several International Journals by IEEE, Wiley, Springer, and Elsevier. He also co-edited 15 books and 1 authored book. He also served as TPC member of several IEEE conferences and symposiums, and as IEEE Toronto, Computer Chapter Chair (2012-2016).
1. Mobile-Code-Based Opportunistic Networking
2. Opportunistic Emergency Scenarios: An Opportunistic Distributed
Computing Approach
3. Reactive and Proactive Routing Strategies in Mobile Ad Hoc Network
4. Secure Hierarchical Infrastructure-Based Privacy Preservation
Authentication Scheme in Vehicular Ad Hoc Networks
5. Simulation Tools for Opportunistic Networks: How to Set Up and
Simulate the ONE Simulator
6. Understanding Influencers of Adaptive Social-Aware Opportunistic
Forwarding
7. Performance Analysis of AODV and DSDV Routing Protocols in Mobile Ad
Hoc Network Using OMNeT++
8. Message Forwarding and Relay Selection Strategies in Mobile
Opportunistic Networks
9. Routing Techniques for Opportunistic Network
10. Blockchain Leveraged Node Incentivization in Cooperation-Based Delay
Tolerant Networks
11. Evaluation of Energy Efficiency of Opportunistic Network Routing
Protocols
12. Mobility Models in Opportunistic Networks
13. Opportunistic Routing in Mobile Networks
14. Security Issues in Opportunistic Networks
2. Opportunistic Emergency Scenarios: An Opportunistic Distributed
Computing Approach
3. Reactive and Proactive Routing Strategies in Mobile Ad Hoc Network
4. Secure Hierarchical Infrastructure-Based Privacy Preservation
Authentication Scheme in Vehicular Ad Hoc Networks
5. Simulation Tools for Opportunistic Networks: How to Set Up and
Simulate the ONE Simulator
6. Understanding Influencers of Adaptive Social-Aware Opportunistic
Forwarding
7. Performance Analysis of AODV and DSDV Routing Protocols in Mobile Ad
Hoc Network Using OMNeT++
8. Message Forwarding and Relay Selection Strategies in Mobile
Opportunistic Networks
9. Routing Techniques for Opportunistic Network
10. Blockchain Leveraged Node Incentivization in Cooperation-Based Delay
Tolerant Networks
11. Evaluation of Energy Efficiency of Opportunistic Network Routing
Protocols
12. Mobility Models in Opportunistic Networks
13. Opportunistic Routing in Mobile Networks
14. Security Issues in Opportunistic Networks
1. Mobile-Code-Based Opportunistic Networking
2. Opportunistic Emergency Scenarios: An Opportunistic Distributed
Computing Approach
3. Reactive and Proactive Routing Strategies in Mobile Ad Hoc Network
4. Secure Hierarchical Infrastructure-Based Privacy Preservation
Authentication Scheme in Vehicular Ad Hoc Networks
5. Simulation Tools for Opportunistic Networks: How to Set Up and
Simulate the ONE Simulator
6. Understanding Influencers of Adaptive Social-Aware Opportunistic
Forwarding
7. Performance Analysis of AODV and DSDV Routing Protocols in Mobile Ad
Hoc Network Using OMNeT++
8. Message Forwarding and Relay Selection Strategies in Mobile
Opportunistic Networks
9. Routing Techniques for Opportunistic Network
10. Blockchain Leveraged Node Incentivization in Cooperation-Based Delay
Tolerant Networks
11. Evaluation of Energy Efficiency of Opportunistic Network Routing
Protocols
12. Mobility Models in Opportunistic Networks
13. Opportunistic Routing in Mobile Networks
14. Security Issues in Opportunistic Networks
2. Opportunistic Emergency Scenarios: An Opportunistic Distributed
Computing Approach
3. Reactive and Proactive Routing Strategies in Mobile Ad Hoc Network
4. Secure Hierarchical Infrastructure-Based Privacy Preservation
Authentication Scheme in Vehicular Ad Hoc Networks
5. Simulation Tools for Opportunistic Networks: How to Set Up and
Simulate the ONE Simulator
6. Understanding Influencers of Adaptive Social-Aware Opportunistic
Forwarding
7. Performance Analysis of AODV and DSDV Routing Protocols in Mobile Ad
Hoc Network Using OMNeT++
8. Message Forwarding and Relay Selection Strategies in Mobile
Opportunistic Networks
9. Routing Techniques for Opportunistic Network
10. Blockchain Leveraged Node Incentivization in Cooperation-Based Delay
Tolerant Networks
11. Evaluation of Energy Efficiency of Opportunistic Network Routing
Protocols
12. Mobility Models in Opportunistic Networks
13. Opportunistic Routing in Mobile Networks
14. Security Issues in Opportunistic Networks