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Performance Assessment of BDS and GPS/BDS Velocity Estimation with Stand-alone Receiver

机译:独立接收器对BDS和GPS / BDS速度估计的性能评估

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摘要

Accurate velocity estimates are critical in highly dynamic positioning, airborne gravimetry, and geophysics applications. This paper focuses on the evaluation of the performance of velocity estimation using the BeiDou navigation satellite system (BDS) alone and integrated Global Positioning System (GPS)/BDS. Firstly, we analyse and compare the position-derivation method and analytical method which are used to calculate BDS satellite velocity from broadcast ephemeris. Results show that the accuracy of the estimated velocity by position-derivation method can be within 1 mm/s and better than that of the analytical method. Secondly, velocity estimation tests were carried out both in static and kinematic modes. The results show that: 1) the accuracy of BDS velocity estimation is in the same order of magnitude to that of GPS; 2) Compared with a single navigation system, the stability and accuracy of velocity estimation can be remarkably improved by integrated GPS/BDS, especially under conditions of poor observation; 3) Compared with Helmert variance component estimation, it is more appropriate and efficient to assign the weights of different types of observations using equivalent weight ratio. Finally, the ionospheric influence on velocity estimation with single-frequency observations can reach several mm/s; this influence can be significantly mitigated by using ionosphere-free combination observations.
机译:准确的速度估算对于高度动态的定位,机载重量分析法和地球物理应用至关重要。本文着重于仅使用北斗导航卫星系统(BDS)和集成的全球定位系统(GPS)/ BDS对速度估计的性能进行评估。首先,我们分析并比较了用于从广播星历表计算BDS卫星速度的位置推导方法和解析方法。结果表明,位置推导法测得的速度精度可以达到1mm / s以内,优于解析法。其次,在静态和运动学模式下都进行了速度估算测试。结果表明:1)BDS速度估计的精度与GPS的数量级相同; 2)与单一导航系统相比,集成的GPS / BDS可以显着提高速度估计的稳定性和准确性,尤其是在观测条件较差的情况下; 3)与Helmert方差分量估计相比,使用等效权重比分配不同类型观测值的权重更为合适和有效。最后,电离层对单频观测速度估计的影响可以达到几毫米/秒。通过使用无电离层的组合观测,可以大大减轻这种影响。

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