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Power budget study for passive target detection and imaging using secondary applications of GPS signals in bistatic radar systems

机译:基于BISTATIC雷达系统中GPS信号二次应用的被动目标检测和成像的电力预算研究

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Signals from satellite systems like GPS, IRIDUM and Globalstar that are reflected from moving or stationary objects are utilised for their detection in a synthetic aperture bistatic radar system (SAR). The movements of the satellite and its position at different coordinates with respect to time can serve as a base for a synthetic aperture. This paper focuses on the development of a system based on the analysis of indirect signals, in particular GPS signals. The main concern in this study is the low power of the GPS signal at the earth's surface (typically about -160 dB). Due to the nature of the reflector/target, some power will be absorbed, and hence result in a further reduction in signal strength reflected by the target. However, the other equally important concern here is the ground and sea clutter, which is 18-22 dB stronger than the direct signal level. Here we present theoretical results of both the maximum detection range and land clutter contributions of the air target detection by bistatic SAR that utilizes the existing GPS satellite as the transmitting signal source.
机译:来自移动或固定物体反射的GPS,Iridum和Globalstar等卫星系统的信号用于它们在合成孔径双雷达系统(SAR)中的检测。卫星相对于时间的不同坐标的卫星的运动可以用作合成孔的底座。本文侧重于基于间接信号分析的系统的开发,特别是GPS信号。本研究的主要问题是地球表面上的GPS信号(通常约-160dB)的低功率。由于反射器/目标的性质,一些功率将被吸收,因此导致目标强度的进一步降低。然而,这里的另一个同样重要的关注是地面和海杂波,比直接信号水平强18-22 dB。在这里,我们通过双基辅SAR呈现空气目标检测的最大检测范围和土地杂波贡献的理论结果,其利用现有的GPS卫星作为发送信号源。

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