北斗-2/GPS导航系统在低纬度地区的初步性能分析

IF 1.2 Q4 REMOTE SENSING
Santhosh Narsetty, Sricharani Thomala, Naveen Kumar Perumalla
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引用次数: 0

摘要

在区域或全球范围内,卫星导航系统可以为无限数量的用户提供三维位置、速度和授时(PVT)服务。北斗二号是中国的区域导航卫星系统,覆盖亚太地区。北斗二号的空间部分包括GEO, MEO和IGSO卫星,使其在导航系统中独一无二。本研究的重点是低纬度地区(印度地区)的卫星能见度和信号强度与仰角的关系。并与GPS定位结果进行了比较。数据来自位于海德拉巴站的GNSS接收器(纬度:17°24′28″,经度:78°31′04″)。结果表明,北斗2号卫星在各个仰角的能见度都优于GPS卫星。然而,在高海拔地区,能见度很低;因此,需要多个系统来获取用户信息。随着仰角的增大,载波噪声密度比(C/No)也随之增大。此外,还计算了标准偏差(STD),并与GPS进行了比较。尽管GPS卫星的平均信号强度在整个高程范围内保持较高,但发现北斗2号卫星的STD较低。这些结果表明,需要进一步的工作来提高多个导航系统的互操作性,并为印度用户提供更准确的位置信息。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Preliminary performance analysis of BeiDou-2/GPS navigation systems over the low latitude region
Abstract On a regional or worldwide scale, satellite-based navigation systems can offer three-dimensional Position, Velocity, and Timing (PVT) services to an indefinite number of users. BeiDou-2 is China’s regional navigation satellite system that encompasses the Asia-Pacific region. BeiDou-2’s space section comprises GEO, MEO, and IGSO satellites, making it unique among the navigation systems. This research focuses on key aspects, including satellite visibility and signal strength, as a function of the elevation angle across the low latitude region (Indian region). In addition, the results were compared with those obtained using the GPS. The data is acquired from a GNSS receiver located at the Hyderabad station (latitude:17°24′28″, longitude:78°31′04″). The results show that BeiDou-2 satellites have better visibility than GPS satellites at all elevation angles. However, visibility is low at high elevations; therefore, multiple systems are required to obtain user information. As the elevation angle increases, the carrier-to-noise density ratio (C/No) also increases. Additionally, the standard deviation (STD) was calculated and compared to that of the GPS. Despite the average signal strength of GPS satellites remaining high throughout the elevation range, the STD of BeiDou-2 satellites was found to be low. These results indicate that further work is needed to improve the interoperability of multiple navigation systems and to provide more accurate location information to Indian users.
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来源期刊
Journal of Applied Geodesy
Journal of Applied Geodesy REMOTE SENSING-
CiteScore
2.30
自引率
7.10%
发文量
30
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