Robotics Simplified: An Illustrative Guide to Learn Fundamentals of Robotics, Including Kinematics, Motion Control, and Trajectory Planning

  • 6h 1m
  • Jisu Elsa Jacob, Manjunath N
  • BPB Publications
  • 2022

A comprehensive outlook on all the concepts of Robotics for beginners

KEY FEATURES

  • Includes key concepts of robot modeling, control, and programming.
  • Numerous examples and exercises on various aspects of robotics.
  • Exposure to physical computing, robotic kinematics, trajectory planning, and motion control systems.

DESCRIPTION

‘Robotics Simplified’ is a learner’s handbook that provides a thorough foundation around robotics, including all the basic concepts. The book takes you through a lot of essential topics about robotics, including robotic sensing, actuation, programming, motion control, and kinematic analysis of robotic manipulators.

To begin with, the book prepares you with the basic foundational knowledge that assists you in understanding the basic concepts of robotics. It helps you to understand key elements of robotic systems, including various actuators, sensors, and different vision systems. It explains the actual physics that robotic systems work upon such as trajectory planning and motion control of manipulators. It covers the kinematics and dynamics of multi-body systems while you learn to develop a robotic model. Various programming techniques and control systems have practically been demonstrated that guide you to reverse engineer, reprogram and troubleshoot some existing simple robots. You will also get a practical demonstration of how your robots can become smart and intelligent using various image processing techniques illustrated in detail.

By the end of this book, you will gain a solid foundation of robotics and get well-versed with the modern techniques that are used for robotic modeling, controlling, and programming.

WHAT YOU WILL LEARN

  • Understand and develop robotic vision and sensing systems.
  • Integrate various robotic actuators and end-effectors.
  • Design and configure manipulators with robotic kinematics.
  • Prepare the trajectory and path planning of robots.
  • Learn robot programming using C, Python, and VAL.

WHO THIS BOOK IS FOR

This book has been meticulously crafted for engineers, students, entrepreneurs, and robotics enthusiasts. This book provides a complete explanation of all major robotics principles, allowing readers of all levels to learn from scratch.

About the Author

Jisu Elsa Jacob is currently working as Assistant Professor in the Department of Electronics and Communication Engineering in Sree Chitra Thirunal College of Engineering, Thiruvananthapuram, Kerala. She holds an M.Tech degree in Electronics (Digital Electronics) from Cochin University of Science and Technology and PhD in Electronics and Communication Engineering from University of Kerala. Her areas of interest include Biomedical signal processing, Digital Electronics and Computer Programming. She has teaching experience of more than ten years in various Engineering colleges. She has authored research papers in acclaimed national and international journals on EEG signal processing and analysis and has presented papers in international conferences.

LinkedIn Profile: Jisu Elsa Jacob

Blog Link: Jisu Elsa Jacob‬ - Google Scholar‬

Manjunath N is currently working as Assistant Professor (ad-hoc) in the Department of Mechanical Engineering in Government Engineering College, Barton Hill, Thiruvananthapuram, Kerala. He is a passionate teaching professional with seven years of teaching experience in various Engineering colleges. He holds a B.Tech in Mechanical Engineering from University of Kerala and an M.Tech degree in Mechanical Engineering (Thermal Engineering) from Cochin University of Science and Technology. His areas of interest include robotics, biomedical instrumentation and mechatronics.

LinkedIn Profile: Manjunath N

In this Book

  • Introduction to Robotics
  • End-Effectors
  • Sensors
  • Robotic Drive Systems and Actuators
  • Robotic Vision Systems and Image Processing
  • Introduction to Robotic Kinematics
  • Forward and Inverse Kinematics
  • Velocity Kinematics and Trajectory Planning
  • Control Systems for Robotic Motion Control
  • Robot Programming
  • Applications of Robotics and Autonomous Systems
  • References
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