A two-step approach for offset and position estimation from pseudo-ranges applied to multilateration tracking

F. Beutler, U. Hanebeck
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引用次数: 3

Abstract

In multilateration tracking, an object, e.g., an airplane, emits a known reference signal, which is received by several base stations (sensors) located at known positions. The receiving times of the signal at the sensors correspond to the times of arrival (TOA) plus an unknown offset, because the emission time is unknown. Usually, for estimating the position of the object, the receiving times are converted to a larger number of time differences of arrival (TDOA) in order to eliminate the unknown offset. To avoid this conversion, the proposed approach directly uses the receiving times. This is achieved by 1. determining the optimal offset from the redundant measurements in closed form and 2. by considering a modified measurement equation. As a result, position estimation can be performed by optimal stochastic linearization.
一种用于多重跟踪的伪距离偏移和位置估计的两步方法
在多层跟踪中,一个物体,例如飞机,发出一个已知的参考信号,该信号被位于已知位置的几个基站(传感器)接收。信号在传感器的接收时间对应于到达时间(TOA)加上一个未知的偏移量,因为发射时间是未知的。通常,为了估计目标的位置,为了消除未知偏移,将接收时间转换为较大数量的到达时间差(TDOA)。为了避免这种转换,建议的方法直接使用接收时间。这是由1得到的。从封闭形式和冗余测量中确定最佳偏移量。通过考虑一个修正的测量方程。因此,位置估计可以通过最优随机线性化来实现。
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