Title :
Augmentation of XNAV System to an Ultraviolet Sensor-Based Satellite Navigation System
Author :
QIAO, Li ; Liu, Jianye ; ZHENG, Guanglou ; Xiong, Zhi
Author_Institution :
Coll. of Autom. Eng., Nanjing Univ. of Aeronaut. & Astronaut., Nanjing, China
Abstract :
X-ray pulsar-based navigation (XNAV) using one X-ray detector is investigated as an augmentation to the capability of an ultraviolet (UV) sensor-based satellite autonomous navigation system. The satellite state dynamics are analyzed to establish the dynamical equations of the satellite autonomous navigation system. A time transformation equation that accounts for relativistic effects is presented and the measurement model of the XNAV system is derived using pulse phase information from only one pulsar. The measurement model of the UV sensor-based satellite navigation system is presented using the Earth image information from the UV sensor. In order to integrate the measurements from the X-ray sensor and the UV sensor, a federated filter is developed to provide the optimal simultaneous estimation of position and velocity of the satellite. The concept is demonstrated on a GPS orbit and a geosynchronous orbit and it is found that the performance of the integrated satellite navigation system is improved with respect to that of the UV sensor-based satellite navigation system.
Keywords :
X-ray applications; satellite navigation; sensors; X-ray detector; X-ray pulsar-based navigation; XNAV system; dynamical equations; time transformation equation; ultraviolet sensor-based satellite autonomous navigation system; Earth; Equations; Extraterrestrial measurements; Image sensors; Phase measurement; Pulse measurements; Relativistic effects; Satellite navigation systems; Time measurement; X-ray detectors; Federated filter; X-ray pulsar; integrated navigation system; satellite autonomous navigation; ultraviolet sensor;
Journal_Title :
Selected Topics in Signal Processing, IEEE Journal of
DOI :
10.1109/JSTSP.2009.2028380