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Method for Remote Determination of Object Coordinates in Space Based on Exact Analytical Solution of Hyperbolic Equations

机译:基于双曲线方程精确分析解的空间中对象坐标的远程确定方法

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摘要

Accurate remote determination of the object coordinates in 3D space is one of the main questions in many applications. In one of the most popular methods, such determination of the location of an object uses the measurement by receiving an electromagnetic signal transmitted by several spatially distributed base stations (BS). The main problem is that it is necessary to reduce errors and computation time. To overcome these difficulties, an analytical method for determining the position of an object based on the analysis of time difference of arrival (TDoA) of signals from the transmitter of the object to the receivers of the BS is proposed. One of the main advantages of this method is that it is possible to eliminate the ambiguity in determining the coordinates of the object in space and to increase the accuracy of determining the coordinates when the TDoA measurement between base stations fluctuates. Applications for autonomous automotive vehicles and space-based positioning systems are analyzed. The results obtained show that the proposed algorithm has an accuracy of determining coordinates several times higher than the method of linearization of hyperbolic equations and is less sensitive to TDoA fluctuations at base stations.
机译:准确的远程确定3D空间中的对象坐标是许多应用中的主要问题之一。在最流行的方法之一中,这种对象的位置的确定通过接收由几个空间分布的基站(BS)发送的电磁信号来使用测量。主要问题是有必要减少错误和计算时间。为了克服这些困难,提出了一种基于从对象的发射机到BS的接收器的到达时间差(TDOA)的时间差来确定对象的位置的分析方法。该方法的主要优点之一是可以消除在确定空间中的物体的坐标并增加当基站之间的TDOA测量波动时确定坐标的准确性的歧义。分析了自主汽车车辆和基于空间定位系统的应用。得到的结果表明,该算法的准确性比双曲方程线性化方法高出几倍的准确性,并且对基站的TDOA波动不太敏感。

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