IRNSS的GDOP调查

K. J. Manjunath, K. Sudha, S. Raman, Vignesam
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摘要

美国全球定位系统(GPS)的出现极大地促进了导航领域的发展。印度已经开发并部署了印度区域导航卫星系统(IRNSS),用于印度境内的导航。影响IRNSS定位精度的因素有很多。其中一个因素是卫星相对于用户的几何形状。几何分布越广,定位的准确性越好。卫星几何冲击可以通过几何精度稀释(GDOP)来测量。GDOP越低,定位精度越好。GNSS需要至少四颗卫星来确定客户端位置。当视线中有更多的卫星时,最好使用四颗卫星来计算一个人的位置。为了更好地利用IRNSS,根据四颗卫星的最佳星座以及所有卫星的最佳星座计算最佳GDOP,进行了研究。系统工具包(STK)用于检查最佳GDOP,动态选择四颗卫星,以获得印度次大陆上更好的客户端位置精度。很明显,使用所有卫星计算的GDOP比使用最好的四颗卫星计算的GDOP要好。因此,预计所有7颗卫星都可用于IRNSS导航解决方案,尽管它需要比选择从特定点可见的4颗卫星多一点的处理时间。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigation of GDOP for IRNSS
The presence of Global Positioning System (GPS) of USA has helped the field of navigation greatly. India has developed and deployed Indian Regional Navigation Satellite System (IRNSS) for navigation within India. The precision of locating position using IRNSS is influenced by a few factors. One such factor is satellite Geometry with respect to the user. Better the geometry spread, better is the location exactness. The Satellite Geometry impact can be measured by Geometric Dilution of Precision (GDOP). Lower the GDOP, better is the accuracy of location. GNSS requires at least four satellites to figure client position. At the point when more number of satellites are in sight, best four satellites can be taken to compute one's position. For making utilization of IRNSS, investigation is made by figuring the best GDOP because of optimum constellation of four satellites in sight as well as for all the satellites in view. The System Tool Kit (STK) is utilized for examination of best GDOP selecting four satellites dynamically to get better client position accuracy over the Indian subcontinent. It is clear that, GDOP computed using all satellites in view is better than the GDOP computed by using best four satellites. Hence it is anticipated that all seven satellites can be used for IRNSS Navigation solution, though it requires little bit more processing time, than selecting four satellites visible from a particular point.
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