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A New Recursive Carrier-Smoothed-Code Filter for differential Global Navigation Satellite Systems

机译:用于差分全球导航卫星系统的新递归载体平滑码滤波器

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Motivated both by the advantage of Hatch filter gain over Kalman-type gain in carrier-smoothed-code filtering, this paper proposes a position-domain Hatch filter for differential kinematic satellite positioning. In general, position-domain filtering is more attractive than range-domain filtering since less information is lost if changes in the visible satellite set occurs frequently. A new interpretation of the conventional range-domain Hatch filter is presented. The new interpretation is extended to position-domain carrier-smoothed-code filtering, resulting in the position-domain Hatch filter. A simulation result verifies that the proposed position-domain Hatch filter performs better than conventional carrier-smoothed-code filters in cases of frequent satellite constellation changes, and even when there is no satellite set change, due to the synergism between Hatch gain and position-domain filtering.
机译:通过舱口过滤器增益的优势在载波平滑码过滤中的舱口滤波器增益的优势,本文提出了一种用于差分运动卫星定位的位置域舱口过滤器。通常,位置域过滤比范围域滤波更有吸引力,因为如果频繁发生可见卫星集中的更改,则丢失较少的信息。提出了对传统范围域舱口筛过滤器的新解释。新的解释扩展到位置域载波平滑代码过滤,从而导致位置域填充滤波器。仿真结果验证所提出的位置域舱口过滤器在频繁的卫星星座变化的情况下比传统的载波平滑码滤波器更好,甚至由于舱口增益和位置之间的协同作用而导致卫星集合变化域过滤。

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