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Analysis of Pseudolite Augmented Precise Positioning Performance for Vessel Berthing

机译:船舶停泊的伪岩增强精确定位性能分析

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GPS has been increasingly exploited to provide positioning and navigation solutions for a variety of applications. In vessel berthing application, however, there are stringent requirements in terms of positioning accuracy, availability and integrity that cannot be satisfied by GPS alone. This is because the performance of satellite-based positioning and navigation systems are heavily dependent on both the number and the geometric distribution of satellite tracked by receivers. Due to the limited number of GPS satellites, a sufficient number of 'visible' satellites cannot be sometimes guaranteed. This paper discusses some issues associated with the implementation of ground-based pseudolite augmentation for vessel berthing. Pseudolite means small transmitter that transmits GPS-like signals in local area. Additional pseudolites strengthen the GPS satellite-pseudolite geometry, and more accurate and reliable positioning solution can be achieved. This paper presents that the pseudolite-augmented precise positioning system can provides continuous centimeter-level positioning accuracy through comparison analysis of RDOP simulation result of the GPS satellite constellation and the pseudolite-augmented GPS satellite constellation.
机译:GPS越来越多地利用,为各种应用提供定位和导航解决方案。然而,在船只停泊应用程序中,在定位准确性,可通过GPS不满足的定位准确性,可用性和完整性方面存在严格的要求。这是因为基于卫星的定位和导航系统的性能严重依赖于接收器跟踪的卫星的数量和几何分布。由于GPS卫星数量有限,有时可以保证足够数量的“可见”卫星。本文讨论了与实现基于地面的伪空间增强的一些问题。伪石表示小发射器,其在局部区域发送类似GPS的信号。额外的假晶体强化GPS卫星 - 伪几何形状,可以实现更准确可靠的定位溶液。本文介绍了伪岩增强的精确定位系统,通过对GPS卫星星座的RDOP仿真结果和假势增强GPS卫星星座的比较分析,提供连续的厘米定位精度。

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