"This reference text discusses intelligent robotic and drone technology with embedded Internet of Things (IoT) for smart applications. The text discusses future directions of optimization methods with various engineering and science fundamentals used in robotics and drone-based applications. Its emphasis is on covering deep learning and similar models of neural network-based learning techniques employed in solving optimization problems of different engineering and science applications. It covers important topics including sensors and actuators in the internet of things (IoT), internet-of-robotics-things (IoRT), IoT in agriculture and food processing, routing challenges in flying Ad-hoc networks, and smart cities. The book will serve as a useful text for graduate students and professionals in the fields of electrical engineering, electronics engineering, computer science, and mechanical engineering"--
This reference text introduces drones and robotic technology with the Internet of Things (IoT) in a single volume. It will serve as a useful text for graduate students and professionals in the fields of electrical engineering, electronics engineering, computer science, and mechanical engineering.
This reference text discusses intelligent robotic and drone technology with embedded Internet of Things (IoT) for smart applications.
The text discusses future directions of optimization methods with various engineering and science fundamentals used in robotics and drone-based applications. Its emphasis is on covering deep learning and similar models of neural network-based learning techniques employed in solving optimization problems of different engineering and science applications. It covers important topics including sensors and actuators in the internet of things (IoT), internet-of-robotics-things (IoRT), IoT in agriculture and food processing, routing challenges in flying Ad-hoc networks, and smart cities.
The book will serve as a useful text for graduate students and professionals in the fields of electrical engineering, electronics engineering, computer science, and mechanical engineering.
Preface |
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Editors |
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Chapter 1 Smart Agriculture Using UAV and Deep Learning: A Systematic Review |
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1 | (16) |
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Chapter 2 Internet of Robotic Things (IoRT) and Its Manifold Applications: An Overview |
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17 | (16) |
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Chapter 3 Smart Cities and the Use of Internet of Drone Things (IoDT) |
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33 | (14) |
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Chapter 4 The Roles of Artificial Intelligence, Machine Learning, and IoT in Robotic Applications |
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47 | (14) |
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Chapter 5 IoT-Based Laser Trip Wire System for Safety and Security, in Industries |
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61 | (10) |
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Chapter 6 Detecting Payment Fraud Using Automatic Feature Engineering with Harris Grey Wolf Deep Neural Network |
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71 | (10) |
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Gogineni Krishna Chaitanya |
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Chapter 7 Real-Time Agent-Based Load-Balancing Algorithm for Internet of Drone (IoD) in Cloud Computing |
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81 | (14) |
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Chapter 8 Ultrawide Band Antenna for Wireless Communications: Applications and Challenges |
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95 | (12) |
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Chapter 9 Internet of Underwater Things: Applications and Challenges |
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107 | (14) |
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Chapter 10 IoT-Enabled Wireless Mobile Ad-Hoc Networks: Introduction, Challenges, Applications: Review Chapter |
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121 | (14) |
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Chapter 11 Internet of Things (IOT): Hands-On Sensing, Actuating, and Output Modules in Robotics |
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135 | (28) |
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Chapter 12 Fault Detection in Robotic Arms |
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163 | (18) |
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Chapter 13 Artificial Intelligence Advanced Technology IOT, 5G Robots, and Drones to Combat Covid-19 |
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181 | (14) |
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Chapter 14 E-Learning with Internet of Things: Architecture and Its Applications |
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195 | (12) |
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Chapter 15 A Review on the Internet of Robotic Things Concepts, Added Values, Applications, and Issues |
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207 | (20) |
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Chapter 16 GaAs Nanostructure-Based Solar Cells with Enhanced Light-Harvesting Efficiency |
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227 | (20) |
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Chapter 17 Advanced Technologies in IoT for Development of Smart Cities |
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247 | (10) |
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Chapter 18 Implementation of Soft Skills for Humanoid Robots Using Artificial Intelligence |
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257 | (16) |
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Index |
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Nitin Goyal is currently working as an associate professor, Chitkara University Research and Innovation Network (CURIN), Chitkara University, Punjab, India. He is specialized in underwater wireless sensor networks (UWSN), having applications of military operations. He worked on wireless sensor networks (WSN), mobile ad-hoc network (MANET), etc. He is having around 11 years of teaching and research experience and has published approximately 40 research papers in various International/National Journals, Books and Conferences out of which 5 are SCI, 4 are SCOPUS, 4 are SCOPUS indexed book chapters. He is currently working in the area of machine learning, IoT, IoD in communication networks to solve some real-world problems.
Sharad Sharma is currently working as head, department of electronics and communication engineering, Maharishi Markandeshwar (Deemed to be University), India. He has more than 20 years of teaching and research experience. He has conducted workshops on Soft Computing and its applications in engineering, Wireless Networks, Simulators, etc. He has a keen interest in teaching and implementing the latest techniques related to wireless and mobile Communications. His research interests are routing protocol design, performance evaluation, and optimization for wireless mesh networks using nature-inspired computing, Internet of Things and Space Communication, etc.
Arun Kumar Rana is currently working as an assistant professor, Panipat Institute of Engineering & Technology, Samalkha, India. He has more than 13 years of teaching and research experience. He has published around 50 papers in National and International Journals and also in conferences. His area of interest includes image processing, wireless sensor network, Internet of Things, artificial intelligence, machine learning, and embedded systems. He is also a member of the Asia Society of Research.
Suman Lata Tripathi is presently working as a professor, School of Electronics and Electrical Engineering, Lovely Professional University, Punjab, India. She has more than seventeen years of teaching and research experience and has published more than 45 research papers in refereed journals and conferences. She has been nominated for the Research Excellence Award in 2019 at Lovely professional university. She had received the best paper at IEEE ICICS-2018. She has published an edited book titled Recent advancement in Electronic Device, Circuit and Materials by Nova science publishers. She has also submitted edited books, Advanced VLSI Design and Testability Issues and Electronic Devices and Circuit Design Challenges for IoT application in CRC Taylor & Francis and Apple Academic Press. She is also associated as an editor of book Series on Green Energy: Fundamentals, Concepts, and Applications and Design and development of Energy efficient systems to be published by Scrivener Publishing, Wiley (In production). She is currently working on two accepted book proposals specifically on biomedical engineering with Elsevier and CRC Press. She is also associated with Wiley-IEEE for her multi-authored (ongoing) book in the area of VLSI design with HDLs. Her area of expertise includes microelectronics device modeling and characterization, low power VLSI circuit design, VLSI design of testing, and advance FET design for IoT, Embedded System Design, and biomedical applications.