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Applied Mathematics in Integrated Navigation Systems (Aiaa Education Series)
  
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Applied Mathematics in Integrated Navigation Systems (Aiaa Education Series) (Hardcover)

by Robert M. Rogers (Author) "Navigation systems are used for land, sea, airborne, and space vehicles..." (more)
Key Phrases: error dynamic model, angular velocity addition theorem, inertial sensor errors, Monte Carlo, Substituting Eqs, Fort Bragg (more...)
3.7 out of 5 stars  (3 customer reviews)


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Editorial Reviews
Book Description
Applied Mathematics in Integrated Navigation Systems combines an on-board navigation solution (position, velocity, and attitude), and independent navigation data (aids-to-navigation).

The first part of the book covers the basic elements of mathematics, kinematics, equations describing navigation systems/sensors and their error models, aids-to-navigation, and Kalman filtering. Detailed derivations are presented and examples are given. The second part of the book presents case studies that apply the elements to real-world projects.

This textbook is intended for upper-level undergraduate, graduate students, and working professionals in the area of design, integration, and testing/evaluation of navigation systems. Chapter exercises, appendices, and summaries supplement the text.

Book Info
Text provides a foundation for addressing the different aspects of integrated navigation systems. Includes additional background material and exercises. For undergraduate and graduate students. Previous edition: c2000. DLC: Aids to air navigation--Research. --This text refers to the Hardcover edition.


Product Details
  • Hardcover: 300 pages
  • Publisher: AIAA (American Institute of Aeronautics & Ast (September 15, 2000)
  • Language: English
  • ISBN-10: 156347445X
  • ISBN-13: 978-1563474453
  • Product Dimensions: 9 x 6.2 x 1 inches
  • Shipping Weight: 1.5 pounds
  • Average Customer Review: 3.7 out of 5 stars  (3 customer reviews)
  • Amazon.com Sales Rank: #1,848,139 in Books (See Bestsellers in Books)
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  • In-Print Editions: Hardcover (Third) |  All Editions