Direct Position Determination for Single Sensor Emitter Localization with Unknown Period

Xuefeng Feng, Zhen Huang, Jiazhi He, Ying Xiao, Dingli Xue
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引用次数: 1

Abstract

In this paper, a novel direct position determination approach is proposed for single sensor emitter localization with unknown period. Based on signal periodicity, stationary emitters can be located by a single moving sensor with only one antenna. By exploiting the time difference of arrival between received signals at different trajectory points, the location of a non-cooperative emitter can be jointly estimated with its signal period. Since the time difference of arrival should be estimated before localization, this method, which is also known as two-step method, has poor performance at low signal-to-noise ratio. By grouping the conjugate products of signals received at different trajectory points, the well-known direct position determination method is extended to the field of single sensor emitter geolocation. The proposed method estimates the emitter position directly from the received signal, which reduces the information loss from time difference of arrival estimation to position estimation. Numerical simulations indicate that, compared with the conventional two-step method, the proposed method achieves better performance under low signal-to-noise ratio.
未知周期单传感器发射器定位的直接定位
针对周期未知的单传感器发射器定位问题,提出了一种新的直接定位方法。基于信号的周期性,可以用一个移动传感器和一个天线来定位固定发射体。利用接收信号到达不同轨迹点的时间差,利用信号周期联合估计非合作发射体的位置。由于在定位前需要估计到达的时间差,该方法又称两步法,在低信噪比下性能较差。通过对不同轨迹点接收到的信号的共轭积进行分组,将已知的直接定位方法推广到单传感器发射器地理定位领域。该方法直接从接收到的信号中估计发射器的位置,减少了从到达估计的时间差到位置估计的信息损失。数值仿真结果表明,与传统的两步法相比,该方法在低信噪比下具有更好的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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