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Dynamic Vision for Perception and Control of Motion

Dynamic Vision for Perception and Control of Motion

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Author: Ernst D. Dickmanns
Publisher: Springer
Category: Book

List Price: $99.00
Buy New: $69.30
You Save: $29.70 (30%)



New (22) from $69.30

Sales Rank: 1747511

Media: Hardcover
Edition: 1
Number Of Items: 1
Pages: 474
Shipping Weight (lbs): 2.1
Dimensions (in): 9.3 x 6.3 x 1.3

ISBN: 1846286379
Dewey Decimal Number: 629.046
EAN: 9781846286377
ASIN: 1846286379

Publication Date: April 25, 2007
Shipping: Eligible for Super Saver Shipping
Availability: Usually ships in 1-2 business days

Also Available In:

  • Kindle Edition - Dynamic Vision for Perception and Control of Motion
  • Hardcover - Dynamic Vision for Perception and Control of Motion
  • Digital - Dynamic Vision for Perception and Control of Motion

Accessories:

  • Process Control Performance Assessment: From Theory to Implementation (Advances in Industrial Control)
  • Modal Array Signal Processing: Principles and Applications of Acoustic Wavefield Decomposition (Lecture Notes in Control and Information Sciences)
  • Simulation-based Algorithms for Markov Decision Processes (Communications and Control Engineering)

Similar Items:

  • Level Set Methods and Dynamic Implicit Surfaces
  • Probabilistic Robotics (Intelligent Robotics and Autonomous Agents)

Editorial Reviews:

Product Description

The application of machine vision to autonomous vehicles is an increasingly important area of research with exciting applications in industry, defense, and transportation likely in coming decades.

Dynamic Vision for Perception and Control of Road Vehicles has been written by the world's leading expert on autonomous road-following vehicles and brings together twenty years of innovation in the field by Professor Dickmanns and his colleagues at the University of the German Federal Armed Forces in Munich.

The book uniquely details an approach to real-time machine vision for the understanding of dynamic scenes, viewed from a moving platform that begins with spatio-temporal representations of motion for hypothesized objects whose parameters are adjusted by well-known prediction error feedback and recursive estimation techniques.

A coherent and up-to-date coverage of the subject matter is presented, with the machine vision and control aspects detailed, along with reports on the mission performance of the first vehicles using these innovative techniques built at Munich. Pointers to the future development and likely applications of this hugely important field of research are presented.

Dynamic Vision for Perception and Control of Road Vehicles will be a key reference for technologists working in autonomous vehicles and mobile robotics in general who wish to access the leading research in this field, as well as researchers and students working in machine vision and dynamic control interested in one of the most interesting and promising applications of these techniques.



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