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Cognitive Computing Models in Communication Systems
Budati Anil Kumar (Edited by), BA Kumar (Author), S. B. Goyal (Edited by), Sardar M. N. Islam (Edited by)
9781119865070, Wiley
Hardback, published 27 October 2022
240 pages
22.9 x 15.2 x 1.6 cm, 0.599 kg
COGNITIVE COMPUTING MODELS IN COMMUNICATION SYSTEMS A concise book on the latest research focusing on problems and challenges in the areas of data transmission technology, computer algorithms, AI-based devices, computer technology, and their solutions. The book provides a comprehensive overview of state-of-the-art research work on cognitive models in communication systems and computing techniques. It also bridges the gap between various communication systems and solutions by providing the current models and computing techniques, their applications, the strengths and limitations of the existing methods, and the future directions in this area. The contributors showcase their latest research work focusing on the issues, challenges, and solutions in the field of data transmission techniques, computational algorithms, artificial intelligence (AI)-based devices, and computing techniques. Readers will find in this succinctly written and unique book: Audience The book is designed for researchers and electronics engineers, computer science engineers, industrial engineers, and mechanical engineers (both in academia and industry) working in the fields of machine learning, cognitive computing, mobile communication, and wireless network system.
Preface xi 1 Design of a Low-Voltage LDO of CMOS Voltage Regulator for Wireless Communications 1 1.1 Introduction 2 2 Performance Analysis of Machine Learning and Deep Learning Algorithms for Smart Cities: The Present State and Future Directions 15 2.1 Introduction 16 3 Application of Machine Learning Algorithms and Models in 3D Printing 47 3.1 Introduction 48 4 A Novel Model for Optimal Reliable Routing Path Prediction in MANET 75 4.1 Introduction 76 5 IoT-Based Smart Traffic Light Control 91 5.1 Introduction 92 6 Differential Query Execution on Privacy Preserving Data Distributed Over Hybrid Cloud 107 6.1 Introduction 107 7 Design of CMOS Base Band Analog 123 7.1 Introduction 124 8 Review on Detection of Neuromuscular Disorders Using Electromyography 137 8.1 Introduction 138 9 Design of Complementary Metal–Oxide Semiconductor Ring Modulator by Built-In Thermal Tuning 145 9.1 Introduction 146 10 Low-Power CMOS VCO Used in RF Transmitter 155 10.1 Introduction 156 11 A Novel Low-Power Frequency-Modulated Continuous Wave Radar Based on Low-Noise Mixer 165 11.1 Introduction 166 12 a Highly Integrated Cmos Rf T X Used for IEEE 802.15.4 181 12.1 Introduction 182 13 A Novel Feedforward Offset Cancellation Limiting Amplifier in Radio Frequencies 189 13.1 Introduction 190 14 A Secured Node Authentication and Access Control Model for IoT Smart Home Using Double-Hashed Unique Labeled Key-Based Validation 199 14.1 Introduction 200 References 219
Acknowledgement xiii
S. Pothalaiah, Dayadi Lakshmaiah, B. Prabakar Rao, D. Nageshwar Rao, Mohammad Illiyas and G. Chandra Sekhar
1.2 LDO Controller Arrangement and Diagram Drawing 2
1.3 Conclusion 14
Pradeep Bedi, S. B. Goyal, Sardar MN Islam, Jia Liu and Anil Kumar Budati
2.2 Smart City: The Concept 16
2.3 Application Layer 18
2.4 Issues and Challenges in Smart Cities: An Overview 21
2.5 Machine Learning: An Overview 22
2.6 Unsupervised Learning 26
2.7 Deep Learning: An Overview 26
2.8 Deep Learning vs Machine Learning 29
2.9 Smart Healthcare 30
2.10 Smart Transport System 33
2.11 Smart Grids 36
2.12 Challenges and Future Directions 40
2.13 Conclusion 41
Chetanpal Singh
3.2 Literature Review 50
3.3 Methods and Materials 65
3.4 Results and Discussion 69
3.5 Conclusion 70
S.R.M. Krishna, S. Pothalaiah and R. Santosh
4.2 Analytical Hierarchical Process Technique 77
4.3 Mathematical Models and Protocols 78
4.4 Routing Protocols 80
4.5 RTF-AHP Model 81
4.6 Models for Optimal Routing Performance 83
4.7 Results and Discussion 85
4.8 Conclusion 88
Sreenivasa Rao Ijjada and K. Shashidhar
5.2 Scope of the Proposed Work 93
5.3 Proposed System Implementation 94
5.4 Testing and Results 99
5.5 Test Results 100
5.6 Conclusion 104
Sridhar Reddy Vulapula, P. V. S. Srinivas and Jyothi Mandala
6.2 Related Work 108
6.3 Proposed Solution 110
6.4 Novelty in the Proposed Solution 115
6.5 Results 115
6.6 Conclusion 119
S. Pothalaiah, Dayadi Lakshmaiah, Bandi Doss, Nookala Sairam and K. Srikanth
7.2 Proposed Technique of the BBA Chain for Reducing Energy Consumption 125
7.3 Channel Preference Filter 130
7.4 Programmable Amplifier Gain 132
7.5 Executed Outcomes 133
7.6 Conclusion 135
G. L. N. Murthy, Rajesh Babu Nemani, M. Sambasiva Reddy and M. K. Linga Murthy
8.2 Materials 139
8.3 Methods 140
8.4 Conclusion 142
P. Bala Murali Krishna, Satish A., R. Yadgiri Rao, Mohammad Illiyas and I. Satya Narayana
9.2 Device Structure 147
9.3 dc Performance 149
9.4 Small-Signal Radiofrequency Assessments 149
9.5 Data Modulation Operation (High Speed) 150
9.6 Conclusions and Acknowledgments 152
D. Subbarao, Dayadi Lakshmaiah, Farha Anjum, G. Madhu Sudhan Rao and G. Chandra Sekhar
10.2 Transmitter Architecture 157
10.3 Voltage-Controlled Ring Oscillator Design 158
10.4 CMOS Combiner 161
10.5 Conclusion 163
Dayadi Lakshmaiah, Bandi Doss, J.V.B. Subrmanyam, M.K. Chaitanya, Suresh Ballala, R. Yadagirir Rao and I. Satya Narayana
11.2 FMCW Principle 168
11.3 Results 174
11.4 Conclusion 178
Dayadi Lakshmaiah, Subbarao, C.H. Sunitha, Nookala Sairam and S. Naresh
12.2 Related Work 182
12.3 Simulation Results and Discussion 185
12.4 Conclusion 186
Dayadi Lakshmaiah, L. Koteswara Rao, I. Satya Narayana, B. Rajeshwari and I. Venu
13.2 Hardware Design 190
13.3 Experimental Results 195
13.4 Conclusion 195
Sulaima Lebbe Abdul Haleem
14.2 Challenges in IoT Security and Privacy 203
14.3 Background 209
14.4 Proposed Model 210
14.5 Results 21
14.6 Conclusion 218
14.7 Claims 218
Index 221
Subject Areas: Computer science [UY]
