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智能设备支持的北斗卫星导航系统/全球导航卫星系统实时动态定位用于城市基于位置服务中的亚米级精度

Smart Device-Supported BDS/GNSS Real-Time Kinematic Positioning for Sub-Meter-Level Accuracy in Urban Location-Based Services.

作者信息

Wang Liang, Li Zishen, Zhao Jiaojiao, Zhou Kai, Wang Zhiyu, Yuan Hong

机构信息

Academy of Opto-Electronics, Chinese Academy of Sciences, Beijing 100094, China.

University of Chinese Academy of Sciences, Beijing 100049, China.

出版信息

Sensors (Basel). 2016 Dec 21;16(12):2201. doi: 10.3390/s16122201.

Abstract

Using mobile smart devices to provide urban location-based services (LBS) with sub-meter-level accuracy (around 0.5 m) is a major application field for future global navigation satellite system (GNSS) development. Real-time kinematic (RTK) positioning, which is a widely used GNSS-based positioning approach, can improve the accuracy from about 10-20 m (achieved by the standard positioning services) to about 3-5 cm based on the geodetic receivers. In using the smart devices to achieve positioning with sub-meter-level accuracy, a feasible solution of combining the low-cost GNSS module and the smart device is proposed in this work and a user-side GNSS RTK positioning software was developed from scratch based on the Android platform. Its real-time positioning performance was validated by BeiDou Navigation Satellite System/Global Positioning System (BDS/GPS) combined RTK positioning under the conditions of a static and kinematic (the velocity of the rover was 50-80 km/h) mode in a real urban environment with a SAMSUNG Galaxy A7 smartphone. The results show that the fixed-rates of ambiguity resolution (the proportion of epochs of ambiguities fixed) for BDS/GPS combined RTK in the static and kinematic tests were about 97% and 90%, respectively, and the average positioning accuracies (RMS) were better than 0.15 m (horizontal) and 0.25 m (vertical) for the static test, and 0.30 m (horizontal) and 0.45 m (vertical) for the kinematic test.

摘要

利用移动智能设备提供精度在亚米级(约0.5米)的城市定位服务(LBS)是未来全球导航卫星系统(GNSS)发展的一个主要应用领域。实时动态(RTK)定位是一种广泛使用的基于GNSS的定位方法,基于大地测量接收机,它可以将精度从标准定位服务所达到的约10 - 20米提高到约3 - 5厘米。在利用智能设备实现亚米级精度定位方面,本文提出了一种将低成本GNSS模块与智能设备相结合的可行解决方案,并基于安卓平台从头开发了一款用户端GNSS RTK定位软件。在真实城市环境中,使用三星Galaxy A7智能手机,通过北斗导航卫星系统/全球定位系统(BDS/GPS)联合RTK定位,对其实时定位性能进行了静态和动态(流动站速度为50 - 80 km/h)模式下的验证。结果表明,在静态和动态测试中,BDS/GPS联合RTK的模糊度固定率(模糊度固定历元的比例)分别约为97%和90%,静态测试的平均定位精度(均方根误差)水平方向优于0.15米、垂直方向优于0.25米,动态测试的平均定位精度水平方向为0.30米、垂直方向为0.45米。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fbe0/5191179/4d0fcc05a62f/sensors-16-02201-g001.jpg

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