Joint pseudo-range and Doppler positioning method with LEO Satellites‘ signals of opportunity
摘要
Low Earth Orbit (LEO) satellites, with their wide coverage and large number, have gradually become a crucial platform and means for navigation and positioning services. Compared to other LEO constellations, Starlink has over 6000 satellites in orbit, and its signals contain synchronous sequences usable for pseudo-range positioning. Thus, it has a potential serve as an alternative to Global Navigation Satellite System (GNSS) for providing Positioning, Navigation, and Timing (PNT) services. Compared to parabolic antennas and electronically scanned phased array antennas for receiving Starlink signals, wide-beam antennas (such as Low-Noise Block (LNB) downconverters) can be used to achieve low-cost multi-satellite tracking. However, it also encounters the issues of distinguishing between multiple satellite signals and low received signal power, which requires high-sensitivity detection. Moreover, there are some other issues such as unknown signal transmission time and real-time satellite orbits, thereby causing failure to navigation. Accordingly, this study focuses on LEO constellations represented by Starlink, proposes a joint pseudo-range and Doppler positioning method for Starlink satellite Signals of Opportunity (SOP) based on the comprehensive utilization of signals and information from LEO satellites. Moreover, this study analyzes the signal detection capability and satellite isolation method, examines the algorithm’s orbital error suppression performance, and establishes the concept of Equivalent Position Dilution of Precision (EPDOP)