Khanna | AI Robotics | Buch | 978-1-032-69519-8 | sack.de

Buch, Englisch, 256 Seiten, Format (B × H): 156 mm x 234 mm

Khanna

AI Robotics

Ethics, Algorithms, and Technology of Artificial Intelligence-Powered Robots
1. Auflage 2025
ISBN: 978-1-032-69519-8
Verlag: Taylor & Francis Ltd

Ethics, Algorithms, and Technology of Artificial Intelligence-Powered Robots

Buch, Englisch, 256 Seiten, Format (B × H): 156 mm x 234 mm

ISBN: 978-1-032-69519-8
Verlag: Taylor & Francis Ltd


AI robots can learn from their experiences, make decisions in real-time, understand natural language and human gestures, and utilize computer vision to perceive and comprehend their environment. Beginning with the rudimentary concepts of artificial intelligence, AI Robotics: Ethics, Algorithms, and Technology of Artificial Intelligence-Powered Robots explores the intersection of robotics and physics and emphasizes the need for strict adherence to ethical principles in relation to overall progress and the development of humankind. Chapters on robots capable of talking, listening, and visual perception, similar to human beings, are followed by discussions of those that display emotional intelligence. The book also discusses task and motion planning, a set of methods that help robots’ hardware achieve high-level goals by breaking down tasks into smaller, more manageable steps. Lastly, the book describes autonomous robots that can make independent decisions and execute tasks on their own, utilizing sensors and AI-enabled software programmed with predefined guidelines and data. Examples of autonomous robots are presented in a chapter on robot swarms that operate in a decentralized, self-organizing manner through local communication to manage disaster relief, search and rescue operations, warehouse logistics, agricultural practices, and environmental exploration. Offering an up-to-date, expansive and comprehensive treatment of the vast interdisciplinary field of AI-robotics, the book will be an invaluable resource for postgraduate and Ph.D. students as well as academic researchers and professional engineers working on AI-enabled robotics.

Key Features:

- Explores the research frontiers and advancements leveraged by integrating artificial intelligence with robotics.

- Highlights the unique challenges faced in robot vision and speech recognition vis-à-vis computer vision and standard speech processing

- Provides a state-of-the-art overview of emotional recognition, task and motion planning, and coordinated functioning of robots in multi-robot systems

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Zielgruppe


Postgraduate, Professional Practice & Development, and Professional Reference


Autoren/Hrsg.


Weitere Infos & Material


1. Artificial Intelligence, Ethical Concerns, and Social Responsibility

2. AI-Driven Robotics, Robophysics, and Roboethics

3. Robotic Sensing and Actuation Techniques

4. Talking and Listening Robots: Speech Synthesis, Recognition, and Understanding

5. Robots Able to See: General Aspects of Robot Vision

6. Robot Vision: Object Detection by Robots

7. Robot Vision: Exclusive Challenges Faced by Robots

8. Emotionally Intelligent Robots: Bayesian Inference and Fuzzy Logic

9. Emotionally Intelligent Robots: Unlocking More Opportunities

10. Robot Task and Motion Planning

11. Autonomous Robots: SLAM, APF, and PID Algorithms

12. Autonomous Robots: Broadening the Perspective

13. Robotic Swarms: Preliminaries

14. Robotic Swarms: Exploring Additional Avenues and Vistas

15. Robotic Swarms: Expanding Horizons

Appendix: Interactive Mini Glossary of AI Algorithms and Related Terms for Robotics in Question-Answer

Index


Vinod Kumar Khanna is an independent researcher from Chandigarh, India. He is a retired Chief Scientist from the Council of Scientific and Industrial Research (CSIR) – Central Electronics Engineering Research Institute (CEERI), Pilani, India, and a retired Professor from the Academy of Scientific and Innovative Research (AcSIR), Ghaziabad, India. He is a former Emeritus Scientist, CSIR, and Professor Emeritus, AcSIR, India. His broad areas of research include the design, fabrication, and characterization of power semiconductor devices and micro- and nanosensors.



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