Synthetic Aperture Passive Localization Method Based on Slant Range Orthogonal Expansion

Xinsheng He;Ming Deng;Bingjie Chai;Wenlong Dong;Zhaohui Zhang;Chunmin Wu;Yuqi Wang
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引用次数: 0

Abstract

The synthetic aperture passive localization system generally compensates for the second-order phase term of the received signal with the Taylor series of the range history and then uses the focusing result of the compensated signal to obtain the position of the emitter. However, the existence of a higher-order residual phase causes the mismatch of reference function, leading to the bias of localization results. To solve the problem, this article proposes a slant range expansion method based on an orthogonal basis. The optimal expansion of the range history is obtained by constructing a set of orthogonal bases in the space composed of quadratic polynomials so that the residual phase after integration is minimized. The proposed method can effectively mitigate the localization bias caused by the model approximation of a synthetic aperture localization system. Simulations and Monte Carlo tests show that the proposed method outperforms the traditional synthetic aperture localization method.
基于斜距正交展开的合成孔径无源定位方法
合成孔径无源定位系统通常用距离历史的泰勒级数来补偿接收信号的二阶相位项,然后使用补偿信号的聚焦结果来获得发射器的位置。然而,高阶残差相位的存在导致参考函数的失配,导致定位结果的偏差。为了解决这个问题,本文提出了一种基于正交基的倾斜范围展开方法。通过在由二次多项式组成的空间中构造一组正交基来获得距离历史的最优扩展,从而使积分后的剩余相位最小化。所提出的方法可以有效地减轻合成孔径定位系统模型近似引起的定位偏差。仿真和蒙特卡罗测试表明,该方法优于传统的合成孔径定位方法。
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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