9781118447000-111844700X-Global Navigation Satellite Systems, Inertial Navigation, and Integration

Global Navigation Satellite Systems, Inertial Navigation, and Integration

ISBN-13: 9781118447000
ISBN-10: 111844700X
Edition: 3
Author: Mohinder S. Grewal, Angus P. Andrews, Chris G. Bartone
Publication date: 2013
Publisher: Wiley-Interscience
Format: Hardcover 608 pages
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Book details

ISBN-13: 9781118447000
ISBN-10: 111844700X
Edition: 3
Author: Mohinder S. Grewal, Angus P. Andrews, Chris G. Bartone
Publication date: 2013
Publisher: Wiley-Interscience
Format: Hardcover 608 pages

Summary

Global Navigation Satellite Systems, Inertial Navigation, and Integration (ISBN-13: 9781118447000 and ISBN-10: 111844700X), written by authors Mohinder S. Grewal, Angus P. Andrews, Chris G. Bartone, was published by Wiley-Interscience in 2013. With an overall rating of 4.1 stars, it's a notable title among other Computer Modelling (System Theory, Physics, Engineering) books. You can easily purchase or rent Global Navigation Satellite Systems, Inertial Navigation, and Integration (Hardcover) from BooksRun, along with many other new and used Computer Modelling books and textbooks. And, if you're looking to sell your copy, our current buyback offer is $0.83.

Description

An updated guide to GNSS, and INS, and solutions to real-world GNSS/INS problems with Kalman filtering

Written by recognized authorities in the field, this third edition of a landmark work provides engineers, computer scientists, and others with a working familiarity of the theory and contemporary applications of Global Navigation Satellite Systems (GNSS), Inertial Navigational Systems, and Kalman filters. Throughout, the focus is on solving real-world problems, with an emphasis on the effective use of state-of-the-art integration techniques for those systems, especially the application of Kalman filtering. To that end, the authors explore the various subtleties, common failures, and inherent limitations of the theory as it applies to real-world situations, and provide numerous detailed application examples and practice problems, including GNSS-aided INS (tightly and loosely coupled), modeling of gyros and accelerometers, and SBAS and GBAS.

Drawing upon their many years of experience with GNSS, INS, and the Kalman filter, the authors present numerous design and implementation techniques not found in other professional references. The Third Edition includes:

  • Updates on the upgrades in existing GNSS and other systems currently under development
  • Expanded coverage of basic principles of antenna design and practical antenna design solutions
  • Expanded coverage of basic principles of receiver design and an update of the foundations for code and carrier acquisition and tracking within a GNSS receiver
  • Expanded coverage of inertial navigation, its history, its technology, and the mathematical models and methods used in its implementation
  • Derivations of dynamic models for the propagation of inertial navigation errors, including the effects of drifting sensor compensation parameters
  • Greatly expanded coverage of GNSS/INS integration, including derivation of a unified GNSS/INS integration model, its MATLABĀ® implementations, and performance evaluation under simulated dynamic conditions

The companion website includes updated background material; additional MATLAB scripts for simulating GNSS-only and integrated GNSS/INS navigation; satellite position determination; calculation of ionosphere delays; and dilution of precision.

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