Mixed Integer Estimation and Validation for Next Generation GNSS

The coming decade will bring a proliferation of Global Navigation Satellite Systems (GNSS) that are likely to revolutionize society in the same way as the mobile phone has done. The promise of a broader multi-frequency, multi-signal GNSS “system of systems” has the potential of enabling a much wider...

Full description

Bibliographic Details
Main Author: Teunissen, Peter
Other Authors: W. Freeden
Format: Book Chapter
Published: Springer-Verlag 2010
Online Access:http://hdl.handle.net/20.500.11937/20625
Description
Summary:The coming decade will bring a proliferation of Global Navigation Satellite Systems (GNSS) that are likely to revolutionize society in the same way as the mobile phone has done. The promise of a broader multi-frequency, multi-signal GNSS “system of systems” has the potential of enabling a much wider range of demanding applications compared to the current GPS-only situation. Inorder toachieve the highest accuracies one must exploit the unique properties of the received carrier signals.These properties include the multi-satellite system tracking, the mm-level measurement precision, the frequency diversity, and the integer ambiguities of the carrier phases. Successful exploitation of these properties results in an accuracy improvement of the estimated GNSS parameters of two orders of magnitude.The theory that underpins this ultra precise GNSS parameter estimation and validation is the theory of integer inference.This theory is the topic of the present chapter.