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First preliminary fast static ambiguity resolution results of medium-baseline with triple-frequency Beidou wavebands

机译:三频北斗波段中基线的初步初步快速静态模糊度解析结果

摘要

Fast high precision relative Global Navigation Satellite System (GNSS) positioning is very important to various applications and ambiguity resolution is a key requirement. It has been a continuing challenge to determine and fix GNSS carrier-phase ambiguity, especially for medium-and long-distance baselines. In past research, with dual-frequency band Global Positioning System (GPS), it is almost impossible for fast ambiguity resolution of medium- and long-distance baselines mainly due to the ionospheric and tropospheric effects. With the launch of the BeiDou system, triple-frequency band GNSS observations are available for the first time. This research aims to test the ambiguity resolution performance with BeiDou triple-frequency band observations. In this research, two mathematical models are compared: zenith tropospheric delay as an unknown parameter versus corrected tropospheric delay. The ambiguity resolution performance is investigated in detail with BeiDou observations. Different distance baselines are tested: 45 km, 70 km and 100 km and the performances are investigated with different elevation cut-off angles. Also the performance with BeiDou alone and combined BeiDou and GPS are compared. Experimental results clearly show that with practical observations of triple-frequency bands, ambiguity of medium-or long-distance baselines can be fixed. The results also show that: the performance of ambiguity resolution with an elevation cutoff angle of 20 degrees is much better than that of 15 degrees; The performance with tropospheric effect corrected is slightly better than that with tropospheric effect as an estimated parameter; Dual-frequency band GPS observations will benefit ambiguity resolution of integrated BeiDou and GPS.
机译:快速高精度的相对全球导航卫星系统(GNSS)定位对于各种应用非常重要,并且模糊度解决是关键要求。确定和修复GNSS载波相位模糊性一直是一项持续的挑战,尤其是对于中长距离基线而言。在过去的研究中,使用双频带全球定位系统(GPS),由于电离层和对流层的影响,几乎不可能实现中距离和长距离基线的快速歧义解析。随着北斗系统的启动,首次提供了三频段GNSS观测。本研究旨在通过北斗三频带观测来测试歧义分辨性能。在这项研究中,比较了两个数学模型:天顶对流层延迟(作为未知参数)与校正后的对流层延迟。利用北斗的观测资料,对歧义分辨性能进行了详细研究。测试了不同的距离基线:45 km,70 km和100 km,并研究了在不同仰角截止角下的性能。还比较了单独使用北斗以及结合使用北斗和GPS的性能。实验结果清楚地表明,通过对三频带的实际观察,可以解决中远距离基线的歧义。结果还表明:仰角截止角为20度时的歧义分辨能力要比15度时好得多。对流层效应校正后的性能略好于对流层效应作为估计参数的性能;双频段GPS观测将有利于集成北斗和GPS的歧义分辨率。

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