Target detection using space-time adaptive processing (STAP) and a multi-band, multi-channel software defined passive radar

Mubashir Alam, K. Jamil, S. Alhumaidi
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引用次数: 1

Abstract

The use of passive radar for detection of targets of different type has gained considerable popularity in recent times. This radar uses the so-called the “signals of the opportunities” which are already in the environment. These opportunistic signals can be of different types, both in terms of frequency and modulation type. Therefore, instead of designing a separate hardware receiving system, a better approach will be design a single software defined receiver having capability to capture any signal of interest by just changing antenna system. This paper presents the development of a state of the art multi-channel, multi-band software defined passive radar. The complete hardware system with multi-channel receiver, and different antenna system has been designed, to give the system software-defined radio capability. The full chain of the signal processing algorithms for target detection will be presented. The algorithms include beamforming, space-time adaptive processing (STAP), and constant false-alarm rate (CFAR) detector framework. More emphasizes will be on the STAP algorithm and CFAR detector. Actual experimental data captured with a circular array is used to validate the system design and signal processing algorithms.
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利用空时自适应处理(STAP)和多波段、多通道软件定义的无源雷达进行目标检测
近年来,利用无源雷达探测不同类型的目标已获得相当大的普及。这种雷达利用环境中已经存在的所谓“机会信号”。这些机会信号可以是不同类型的,无论是在频率和调制类型方面。因此,与其设计一个单独的硬件接收系统,更好的方法是设计一个单一的软件定义的接收器,它能够通过改变天线系统来捕获任何感兴趣的信号。本文介绍了一种先进的多通道、多波段软件定义无源雷达的发展。设计了完整的硬件系统,包括多路接收机和不同的天线系统,使系统具有软件定义的无线电能力。完整链的信号处理算法的目标检测将被提出。算法包括波束形成、时空自适应处理(STAP)和恒虚警率(CFAR)检测器框架。本文将重点介绍STAP算法和CFAR检测器。用圆形阵列捕获的实际实验数据验证了系统设计和信号处理算法。
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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