High Altitude Platform Station (HAPS)-Aided GNSS for Urban Areas

Hongzhao Zheng, M. Atia, H. Yanikomeroglu
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引用次数: 2

Abstract

Today the global averaged civilian positioning accuracy is still at meter level for all existing Global Navigation Satellite Systems (GNSSs), and the civilian positioning performance is even worse in regions such as the Arctic region and the urban areas. In this work, we examine the positioning performance of the High Altitude Platform Station (HAPS)-aided GPS system in an urban area via both simulation and physical experiment. HAPS can support GNSS in many ways, herein we treat the HAPS as an additional ranging source. From both simulation and experiment results, we can observe that HAPS can improve the horizontal dilution of precision (HDOP) and the 3D positioning accuracy. The simulated positioning performance of the HAPS-aided GPS system is subject to the estimation accuracy of the receiver clock offset. This work also presents the future work and challenges in modelling the pseudorange of HAPS.
高空台站(HAPS)辅助城市GNSS
目前,所有现有全球导航卫星系统(gnss)的全球平均民用定位精度仍在米级水平,在北极地区和城市地区的民用定位性能更差。本文通过仿真和物理实验两种方法研究了HAPS辅助GPS系统在城市中的定位性能。HAPS可以在许多方面支持GNSS,这里我们将HAPS视为额外的测距源。从仿真和实验结果可以看出,HAPS可以提高水平稀释精度(HDOP)和三维定位精度。haps辅助GPS系统的模拟定位性能受接收机时钟偏移估计精度的影响。这项工作还提出了未来的工作和挑战,在模拟伪距离的HAPS。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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