基于自适应混合插值Keystone变换的星链外辐射源雷达目标检测方法

    Target Detection Method for Starlink Passive Radar Based on Adaptive Hybrid Interpolation Keystone Transform

    • 摘要: 针对星链外辐射源雷达在距离徙动校正(Range Migration Correction, RCMC)中难以同时满足精度与实时性的问题,本文提出一种基于自适应混合插值的 Keystone 变换方法。该方法利用有序统计恒虚警率(Ordered Statistics-Constant False Alarm Rate,OS-CFAR)阈值检测结合连通域分析自动获取目标主瓣能量区域,并依据能量分布在重采样过程中分别采用高精度与中精度 Sinc 插值,以实现插值精度与算法复杂度的动态权衡。仿真结果表明,所提方法在保持计算量可控的前提下,可提升能量聚焦效果,有效抑制混叠伪影,能够满足星链信号条件下实时距离徙动校正的应用需求。

       

      Abstract: To address the challenge of simultaneously satisfying accuracy and real-time requirements in Range Migration Correction (RCMC) for Starlink passive radar, this paper proposes a Keystone Transform method based on adaptive hybrid interpolation. This method utilizes Ordered Statistics-Constant False Alarm Rate (OS-CFAR) threshold detection combined with connected component analysis to automatically identify target main lobe energy regions. Subsequently, high-precision and medium-precision Sinc interpolations are selectively applied during the resampling process based on energy distribution, achieving a dynamic trade-off between interpolation accuracy and algorithmic complexity. Simulation results demonstrate that the proposed method improves energy focusing and effectively suppresses aliasing artifacts while maintaining a controllable computational load, thereby meeting the application requirements for real-time RCMC under Starlink signal conditions.

       

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