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Application of track-before-detect techniques in GNSS-based passive radar for maritime surveillance

机译:轨迹前检测技术在基于GNSS的无源雷达中的应用

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GNSS-based passive radar has been recently proved able to enable moving target detection in maritime surveillance applications. The main restriction lies in the low Equivalent Isotropic Radiated Power (EIRP) level of navigation satellites. Extending the integration times with proper target motion compensation has been shown to be a viable solution to improve ship detectability, but this involves computational complexity and increasing sensitivity to motion model mismatches. In this work, we consider the application of a Track-Before-Detect (TBD) method to considerably increase the integration time (and therefore the detection capability) at the same time keeping the computational complexity affordable by practical systems. Dynamic programming TBD algorithms have been specialized for the considered framework and tested against experimental dataset. The obtained results show the effectiveness of this approach to improve the detection capability of the system despite the restricted power budget.
机译:最近已证明基于GNSS的无源雷达能够在海上监控应用中实现移动目标检测。主要限制在于导航卫星的低等效各向同性辐射功率(EIRP)水平。已经示出了具有适当目标运动补偿的集成时间是一种可行的解决方案,以改善船舶可检测性,但这涉及计算复杂性并增加对运动模型不匹配的敏感性。在这项工作中,我们考虑应用轨道前检测(TBD)方法,同时保持通过实际系统经济实惠的计算复杂性的同时增加积分时间(以及因此检测能力)。动态编程TBD算法已经专门用于考虑的框架并对实验数据集进行测试。所获得的结果表明,尽管受限制的电力预算,这种方法的有效性可以提高系统的检测能力。

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