
Modeling and Optimization of Optical Communication Networks
- 431 pages
- English
- PDF
- Available on iOS & Android
Modeling and Optimization of Optical Communication Networks
About this book
MODELING and OPTIMIZATION of OPTICAL COMMUNICATION NETWORKS
Optical networks are an integral part of many of the technologies that we use every day. It is a constantly changing and evolving area, with new materials, processes, and applications coming online almost daily.
This book provides a basis for discussing open principles, methods and research problems in the modeling of optical communication networks. It also provides a systematic overview of the state-of-the-art research efforts and potential research directions dealing with optical communication metworks. It also simultaneously focuses on extending the limits of currently used systems encompassing optical and wireless domains and explores novel research on wireless and optical techniques and systems, describing practical implementation activities, results and issues.
A handbook on applications for both academia and industry, this exciting new volume includes detailed discussions on real-world case studies on trends and emerging technologies associated with modeling of optical communication networks. This book also describes several numerical models and algorithms for simulation and optimization of optical communication networks. Modeling and optimization presents several opportunities for automating operations and introducing intelligent decision making in network planning and in dynamic control and management of network resources, including issues like connection establishment, self-configuration, and self-optimization, through prediction and estimation by utilizing present network state and historical data. It focuses on extending the limits of currently used systems encompassing optical and wireless domains, and explores the latest developments in applications like photonics, high speed communication systems and networks, visible light communication, nano-photonics, wireless, and MIMO systems.
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Information
Table of contents
- Cover
- Title Page
- Copyright Page
- Contents
- Preface
- Chapter 1 Investigation on Optical Sensors for Heart Rate Monitoring
- Chapter 2 Adopting a Fusion Approach for Optical Amplification
- Chapter 3 Optical Sensors
- Chapter 4 Defective and Failure Sensor Detection and Removal in a Wireless Sensor Network
- Chapter 5 Optical Fiber and Prime Optical Devices for Optical Communication
- Chapter 6 Evaluation of Lower Layer Parameters in Body Area Networks
- Chapter 7 Analyzing a Microstrip Antenna Sensor Design for Achieving Biocompatibity
- Chapter 8 Photonic Crystal Based Routers for All Optical Communication Networks
- Chapter 9 Fiber Optic Communication: Evolution, Technology, Recent Developments, and Future Trends
- Chapter 10 Difficulties of Fiber Optic Setup and Maintenance in a Developing Nation
- Chapter 11 Machine Learning-Enabled Flexible Optical Transport Networks
- Chapter 12 Role of Wavelength Division Multiplexing in Optical Communication
- Chapter 13 Optical Ultra-Sensitive Nanoscale Biosensor Design for Water Analysis
- Chapter 14 A Study on Connected Cars–V2V Communication
- Chapter 15 Broadband Wireless Network Era in Wireless Communication – Routing Theory and Practices
- Chapter 16 Recent Trends in Optical Communication, Challenges and Opportunities
- Chapter 17 Photonic Communication Systems and Networks
- Chapter 18 RSA-Based Encryption Approach for Preserving Confidentiality Against Factorization Attacks
- Chapter 19 Sailfish Optimizer Algorithm (SFO) for Optimized Clustering in Internet of Things (IoT) Related to the Healthcare Industry
- Chapter 20 Li-Fi Technology and Its Applications
- Chapter 21 Smart Emergency Assistance Using Optics
- About the Editors
- Index
- EULA