DocumentCode
3112090
Title
Robust airborne navigation algorithms for SRGPS
Author
Heo, Moon-Beom ; Pervan, Boris ; Gautier, Jennifer ; Pullen, Sam ; Enge, Per ; Gebre-Egziabher, Demoz
Author_Institution
Illinois Inst. of Technol., Chicago, IL, USA
fYear
2004
fDate
26-29 April 2004
Firstpage
175
Lastpage
183
Abstract
Shipboard-relative GPS (SRGPS) is an architectural variant of the joint precision approach and landing system (JPALS) that provides high accuracy and high integrity DGPS navigation for automatic shipboard landings. This research is focused on the design of robust airborne algorithms for SRGPS terminal navigation. In this context, a processing methodology is defined to optimally combine the complementary benefits of geometry-free filtering and geometric redundancy. Specifically, when the aircraft is far from the ship (inside or outside the SRGPS service volume), geometry-free filtering is used for cycle estimation of widelane integers. For dual frequency implementations, the advantage of code/carrier divergence-free filtering prior to SRGPS service volume entry can be especially significant because long filter durations can be used. In this paper, the robust navigation architecture is detailed and its performance is evaluated relative to the navigation integrity requirements for shipboard landing of aircraft.
Keywords
Global Positioning System; aircraft navigation; military avionics; DGPS navigation; JPALS; SRGPS service volume; SRGPS terminal navigation; automatic shipboard landings; code/carrier divergence-free filtering; dual frequency implementations; geometric redundancy; geometry-free filtering; joint precision approach/landing systems; navigation integrity requirements; robust airborne navigation algorithms; shipboard-relative GPS; widelane integer cycle estimation; Aircraft navigation; Algorithm design and analysis; Broadcasting; Decorrelation; Filtering; Filters; Global Positioning System; Marine vehicles; Redundancy; Robustness;
fLanguage
English
Publisher
ieee
Conference_Titel
Position Location and Navigation Symposium, 2004. PLANS 2004
Print_ISBN
0-7803-8416-4
Type
conf
DOI
10.1109/PLANS.2004.1308991
Filename
1308991
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