Description
Book Synopsis: A New Edition Featuring Case Studies and Examples of the Fundamentals of Robot Kinematics, Dynamics, and Control
In the 2nd Edition of Robot Modeling and Control, students will cover the theoretical fundamentals and the latest technological advances in robot kinematics. With so much advancement in technology, from robotics to motion planning, society can implement more powerful and dynamic algorithms than ever before. This in-depth reference guide educates readers in four distinct parts; the first two serve as a guide to the fundamentals of robotics and motion control, while the last two dive more in-depth into control theory and nonlinear system analysis.
With the new edition, readers gain access to new case studies and thoroughly researched information covering topics such as:
- Motion-planning, collision avoidance, trajectory optimization, and control of robots
- Popular topics within the robotics industry and how they apply to various technologies
- An expanded set of examples, simulations, problems, and case studies
- Open-ended suggestions for students to apply the knowledge to real-life situations
A four-part reference essential for both undergraduate and graduate students, Robot Modeling and Control serves as a foundation for a solid education in robotics and motion planning.
Details
Looking to study and master the fundamentals of robot kinematics, dynamics, and control? Look no further than the 2nd Edition of Robot Modeling and Control! This comprehensive book explores the theoretical fundamentals and the latest technological advancements in robot kinematics.
With the rapid advancement of technology in various industries, from robotics to motion planning, it is essential to stay up-to-date with the latest algorithms. Robot Modeling and Control provides a deep understanding of the subject matter, allowing readers to implement powerful and dynamic algorithms in today’s evolving world.
In this new edition, readers will have access to fascinating case studies that showcase real-world applications. Dive into topics such as motion planning, collision avoidance, trajectory optimization, and control of robots. Gain insights into popular topics within the robotics industry and learn how they apply to various technologies.
The book also presents an expanded set of examples, simulations, problems, and case studies to enhance your learning experience. These resources allow you to apply the knowledge gained to real-life situations, reinforcing your understanding and preparing you for future challenges in the field.
Whether you are an undergraduate or graduate student, Robot Modeling and Control will serve as an essential four-part reference for your robotics and motion planning education. Get your copy today and lay the foundation for a successful career in this exciting field!
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