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Mathematical Programming Approaches for Multi-Vehicle Motion Planning
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Mathematical Programming Approaches for Multi-Vehicle Motion Planning : Linear, Nonlinear, and Mixed Integer Programming

Book Details

Format Paperback / Softback
ISBN-10 1601987226
ISBN-13 9781601987228
Publisher now publishers Inc
Imprint now publishers Inc
Country of Manufacture US
Country of Publication GB
Publication Date Nov 14th, 2013
Print length 92 Pages
Weight 162 grams
Dimensions 15.50 x 23.40 x 0.70 cms
Product Classification: Robotics
Ksh 8,250.00
Temporarily out of stock, due soon 0 in stock

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Presents a Mathematical Programming (MP) framework that captures the salient features of the general Multi-Vehicle Motion Planning (MVMP) problem. To demonstrate the use of MP for the formulation and solution of MVMP problems, it examines in detail four representative works and summarizes several other related ones.
Real world Multi-Vehicle Motion Planning (MVMP) problems require the optimization of suitable performance measures under an array of complex and challenging constraints involving kinematics, dynamics, collision avoidance, and communication connectivity. The general MVMP problem is thus formulated as a Mathematical Programming (Optimization) problem. This book presents a Mathematical Programming (MP) framework that captures the salient features of the general MVMP problem. To demonstrate the use of MP for the formulation and solution of MVMP problems, it examines in detail four representative works and summarizes several other related ones. Following this conceptual discussion, it provides a step-by-step demonstration of how to formulate, solve, and experimentally validate an MP problem that represents a MVMP. Finally, it discusses the advantages, technical challenges, and limitations of this framework. As solution algorithms and their implementations in solvers continue to develop, it is anticipated that MP solution techniques will be applied to an increasing number of MVMP problems. The framework, formulations, and experimental approach presented here may serve as a guide for future MVMP research

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