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Airborne Relay-Based Regional Positioning System

机译:机载基于中继的区域定位系统

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摘要

Ground-based pseudolite systems have some limitations, such as low vertical accuracy, multipath effects and near-far problems. These problems are not significant in airborne-based pseudolite systems. However, the monitoring of pseudolite positions is required because of the mobility of the platforms on which the pseudolites are mounted, and this causes performance degradation. To address these pseudolite system limitations, we propose an airborne relay-based regional positioning system that consists of a master station, reference stations, airborne relays and a user. In the proposed system, navigation signals are generated from the reference stations located on the ground and are relayed via the airborne relays. Unlike in conventional airborne-based systems, the user in the proposed system sequentially estimates both the locations of airborne relays and his/her own position. Therefore, a delay due to monitoring does not occur, and the accuracy is not affected by the movement of airborne relays. We conducted several simulations to evaluate the performance of the proposed system. Based on the simulation results, we demonstrated that the proposed system guarantees a higher accuracy than airborne-based pseudolite systems, and it is feasible despite the existence of clock offsets among reference stations.
机译:地面伪卫星系统有一些局限性,例如垂直精度低,多径效应和近距离问题。这些问题在基于机载的伪卫星系统中并不重要。但是,由于要安装伪卫星的平台具有移动性,因此需要监视伪卫星的位置,这会导致性能下降。为了解决这些伪卫星系统的局限性,我们提出了一种基于机载中继的区域定位系统,该系统由主站,参考站,机载中继和用户组成。在提出的系统中,导航信号是从地面上的参考站生成的,并通过机载中继器中继。与传统的机载系统不同,拟议系统中的用户依次估算机载继电器的位置和他/她自己的位置。因此,不会发生由于监视引起的延迟,并且精度不受机载继电器运动的影响。我们进行了几次仿真,以评估所提出系统的性能。基于仿真结果,我们证明了所提出的系统比机载伪卫星系统具有更高的精度,并且尽管参考站之间存在时钟偏移,该系统也是可行的。

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