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首页> 外文期刊>Science World Journal >2-DIMENSIONAL POSITION ERROR BIAS ANALYSIS OF AN ANGLE OF ARRIVAL BASED TARGET LOCATING SYSTEM
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2-DIMENSIONAL POSITION ERROR BIAS ANALYSIS OF AN ANGLE OF ARRIVAL BASED TARGET LOCATING SYSTEM

机译:基于到达角的目标定位系统的二维位置误差偏差分析

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An angle of arrival (AOA) based locating system determines the location of an emitting target using its emission detected at spatially deployed ground station (GS) with an angulation algorithm. The position estimation (PE) accuracy of the system depends on several factors one of which is the approach to the development of the angulation algorithm. For passive target locating, the closed-form angulation algorithm is used and has been known to introduce bias in the PE process. In this paper, a bias analysis of the closed-form angulation algorithm is carried out to determine its percentage in the overall position mean square error (MSE). The analysis is carried out using a three-GS triangular configuration at some randomly selected unmanned aerial vehicle (UAV) drone locations. Monte Carlo simulation result based on 200 realizations shows that the bias error introduced by the angulation algorithm in the overall position MSE is about 64%. With the knowledge of the bias percentage, the actual locations of the UAV drones within the AOA-based locating system coverage can be determined.
机译:基于到达角(AOA)的定位系统使用通过角度算法在空间部署的地面站(GS)处检测到的发射目标来确定发射目标的位置。系统的位置估计(PE)精度取决于几个因素,其中之一是角度算法开发的方法。对于被动目标定位,使用封闭形式的角度算法,并且已知在PE过程中会引入偏差。本文对闭合形式的角度算法进行了偏差分析,以确定其在整体位置均方误差(MSE)中的百分比。使用三GS三角形配置在一些随机选择的无人机(UAV)无人机位置进行分析。基于200个实现的蒙特卡罗仿真结果表明,角度算法在整体位置MSE中引入的偏差误差约为64%。有了偏差百分比的知识,就可以确定无人机在基于AOA的定位系统覆盖范围内的实际位置。

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