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An Improved Aerial Target Localization Method with a Single Vector Sensor

机译:改进的单矢量传感器空中目标定位方法

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摘要

This paper focuses on the problems encountered in the actual data processing with the use of the existing aerial target localization methods, analyzes the causes of the problems, and proposes an improved algorithm. Through the processing of the sea experiment data, it is found that the existing algorithms have higher requirements for the accuracy of the angle estimation. The improved algorithm reduces the requirements of the angle estimation accuracy and obtains the robust estimation results. The closest distance matching estimation algorithm and the horizontal distance estimation compensation algorithm are proposed. The smoothing effect of the data after being post-processed by using the forward and backward two-direction double-filtering method has been improved, thus the initial stage data can be filtered, so that the filtering results retain more useful information. In this paper, the aerial target height measurement methods are studied, the estimation results of the aerial target are given, so as to realize the three-dimensional localization of the aerial target and increase the understanding of the underwater platform to the aerial target, so that the underwater platform has better mobility and concealment.
机译:本文着眼于利用现有空中目标定位方法在实际数据处理中遇到的问题,分析了引起问题的原因,并提出了一种改进的算法。通过对海洋实验数据的处理,发现现有算法对角度估计的精度有更高的要求。改进后的算法降低了角度估计精度的要求,获得了鲁棒的估计结果。提出了最接近距离匹配估计算法和水平距离估计补偿算法。通过前后双向双向滤波的方法,对数据进行后处理后的平滑效果得到了提高,可以对初始数据进行滤波,从而滤波后的结果保留了更多有用的信息。本文研究了空中目标高度测量方法,给出了空中目标的估计结果,以实现空中目标的三维定位,并增加了对水下平台对空中目标的认识,因此,水下平台具有更好的移动性和隐蔽性。

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