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

机译:智能设备支持的BDS / GNSS实时运动学定位,可提供基于城市定位服务的亚米级精度

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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.
机译:使用移动智能设备提供亚米级精度(约0.5 m)的城市定位服务(LBS)是未来全球导航卫星系统(GNSS)开发的主要应用领域。实时运动(RTK)定位是一种广泛使用的基于GNSS的定位方法,根据大地测量接收器,它可以将精度从大约10–20 m(通过标准定位服务实现)提高到大约3–5 cm。在使用智能设备实现亚米级精度的定位时,本工作提出了将低成本GNSS模块与智能设备相结合的可行解决方案,并从零开始开发了用户端GNSS RTK定位软件在Android平台上。北斗导航卫星系统/全球定位系统(BDS / GPS)结合RTK在静态和运动学(流动站速度为50–80 km / h)条件下的定位,验证了其实时定位性能。拥有SAMSUNG Galaxy A7智能手机的真实城市环境。结果表明,在静态和运动学测试中,BDS / GPS组合RTK的歧义分辨率固定比率(歧义历元的比例固定)分别约为97%和90%,并且平均定位精度(RMS)静态测试的水平分别优于0.15 m(水平)和0.25 m(垂直),运动学方面的水平分别优于0.30 m(水平)和0.45 m(垂直)。

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