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A theoretical study on the bottlenecks of GPS phase ambiguity resolution in a CORS RTK Network

机译:CORS RTK网络中GPS相位歧义分辨率瓶颈的理论研究

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Crucial to the performance of GPS Network RTK positioning is that a user receives and applies correction information from a CORS Network. These corrections are necessary for the user to account for the atmospheric (ionospheric and tropospheric) delays and possibly orbit errors between his approximate location and the locations of the CORS Network stations. In order to provide the most precise corrections to users, the CORS Network processing should be based on integer resolution of the carrier phase ambiguities between the network's CORS stations. One of the main challenges is to reduce the convergence time, thus being able to quickly resolve the integer carrier phase ambiguities between the network's reference stations. Ideally, the network ambiguity resolution should be conducted within one single observation epoch, thus truly in real time.Unfortunately, single-epoch CORS Network RTK ambiguity resolution is currently not feasible and in the present contribution we study the bottlenecks preventing this. For current dual-frequency GPS the primary cause of these CORS Network integer ambiguity initialization times is the lack of a sufficiently large number of visible satellites. Although an increase in satellite number shortens the ambiguity convergence times, instantaneous CORS Network RTK ambiguity resolution is not feasible even with 14 satellites. It is further shown that increasing the number of stations within the CORS Network itself does not help ambiguity resolution much, since every new station introduces new ambiguities. The problem with CORS Network RTK ambiguity resolution is the presence of the atmospheric (mainly ionospheric) delays themselves and the fact that there are no external corrections that are sufficiently precise. We also show that external satellite clock corrections hardly contribute to CORS Network RTK ambiguity resolution, despite their quality, since the network satellite clock parameters and the ambiguities are almost completely uncorrelated. One positive is that the foreseen modernized GPS will have a very beneficial effect on CORS ambiguity resolution, because of an additional frequency with improved code precision.
机译:GPS网络RTK定位的性能至关重要的是,用户从CORS网络接收并应用校正信息。用户必须进行这些校正,以解决大气(电离层和对流层)的延迟以及其大致位置与CORS网络站位置之间的轨道误差。为了向用户提供最精确的校正,CORS网络处理应基于网络CORS站点之间载波相位模糊度的整数分辨率。主要挑战之一是减少收敛时间,从而能够快速解决网络参考站之间的整数载波相位模糊问题。理想情况下,应该在一个观察周期内真正实时地进行网络模糊度解析。不幸的是,单周期CORS网络RTK模糊度解析目前尚不可行,在本文中,我们研究了防止这种情况的瓶颈。对于当前的双频GPS,这些CORS网络整数模糊度初始化时间的主要原因是缺少足够多的可见卫星。尽管增加卫星数量会缩短歧义收敛时间,但即使使用14颗卫星,即时CORS Network RTK模糊歧义解决方案也不可行。进一步表明,由于每个新站点都会引入新的歧义,因此增加CORS网络本身内的站点数量并不会大大帮助歧义解决。 CORS Network RTK模糊度分辨率的问题在于大气层(主要是电离层)本身存在延迟,并且没有足够精确的外部校正这一事实。我们还显示,尽管外部卫星时钟校正具有质量保证,但几乎不会提高CORS Network RTK模糊度的分辨率,因为网络卫星时钟参数和模糊度几乎完全不相关。可以肯定的是,由于增加了频率并提高了代码精度,可以预见的现代化GPS将对CORS模糊度分辨率产生非常有益的影响。

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