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Enhanced Positioning Algorithm of ARPS for Improving Accuracy and Expanding Service Coverage

机译:ARPS的增强定位算法可提高准确性并扩大服务范围

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摘要

The airborne relay-based positioning system (ARPS), which employs the relaying of navigation signals, was proposed as an alternative positioning system. However, the ARPS has limitations, such as relatively large vertical error and service restrictions, because firstly, the user position is estimated based on airborne relays that are located in one direction, and secondly, the positioning is processed using only relayed navigation signals. In this paper, we propose an enhanced positioning algorithm to improve the performance of the ARPS. The main idea of the enhanced algorithm is the adaptable use of either virtual or direct measurements of reference stations in the calculation process based on the structural features of the ARPS. Unlike the existing two-step algorithm for airborne relay and user positioning, the enhanced algorithm is divided into two cases based on whether the required number of navigation signals for user positioning is met. In the first case, where the number of signals is greater than four, the user first estimates the positions of the airborne relays and its own initial position. Then, the user position is re-estimated by integrating a virtual measurement of a reference station that is calculated using the initial estimated user position and known reference positions. To prevent performance degradation, the re-estimation is performed after determining its requirement through comparing the expected position errors. If the navigation signals are insufficient, such as when the user is outside of airborne relay coverage, the user position is estimated by additionally using direct signal measurements of the reference stations in place of absent relayed signals. The simulation results demonstrate that a higher accuracy level can be achieved because the user position is estimated based on the measurements of airborne relays and a ground station. Furthermore, the service coverage is expanded by using direct measurements of reference stations for user positioning.
机译:有人提出采用导航信号中继的机载中继定位系统(ARPS)作为替代定位系统。然而,ARPS具有局限性,例如相对较大的垂直误差和服务限制,因为首先,基于在一个方向上定位的空中中继器来估计用户位置,其次,仅使用中继的导航信号来处理定位。在本文中,我们提出了一种增强的定位算法来提高ARPS的性能。增强算法的主要思想是基于ARPS的结构特征在计算过程中适应性使用虚拟或直接测量参考站。与现有的用于机载中继和用户定位的两步算法不同,根据是否满足用户定位所需的导航信号数量,将增强算法分为两种情况。在第一种情况下,信号数量大于四个,用户首先估算机载继电器的位置及其自身的初始位置。然后,通过积分参考站的虚拟测量值来重新估算用户位置,该参考站的虚拟测量值是使用初始估算的用户位置和已知参考位置计算得出的。为了防止性能下降,在通过比较预期的位置误差确定其要求之后执行重新估计。如果导航信号不足(例如,当用户不在空中中继覆盖范围之内),则可以通过使用参考站的直接信号测量代替不存在的中继信号来估计用户位置。仿真结果表明,由于基于机载继电器和地面站的测量值估计了用户位置,因此可以实现更高的精度水平。此外,通过使用参考站的直接测量进行用户定位来扩展服务范围。

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