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首页> 外文期刊>IEEE Transactions on Aerospace and Electronic Systems >STAP with medium PRF mode for non-side-looking airborne radar
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STAP with medium PRF mode for non-side-looking airborne radar

机译:具有中等PRF模式的STAP,用于非侧面机载雷达

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Space-time adaptive processing (STAP) has been widely discussed for airborne radar systems to improve the system performance of detecting targets. This is especially true for airborne early warning (AEW) radar, which should find long-range and small radar cross section (RCS) targets such as the stealth aircraft and missiles. However, in existing airborne radar literature, STAP is mainly considered for clutter and jamming rejection in side-looking airborne radar (SLAR) applications. There have been fewer discussions on airborne radar with non-side-ways looking array radar (non-SLAR). The STAP of non-SLAR such as forward looking array radar is also very important and can not be avoided for airborne radar to detect targets in all directions. The STAP of the non-SLAR is studied here. A scheme has been proposed, which is processed by the way of STAP combined with multiple staggered medium pulse repetition frequencies (PRFs). We further study the selection of PRFs in order to make the scheme more available for non-SLAR radar. We analyze two typical non-SLAR cases, i.e., inclined-sideways looking array and forward looking array. We examine this scheme by comparing the performances of three processing systems under the criteria of range-velocity blind zone minimization. Computer simulation results show the multiple-PRFs STAP scheme is feasible for non-SLAR and can be applied to phased-array AEW radar systems
机译:时空自适应处理(STAP)已被广泛讨论用于机载雷达系统,以提高探测目标的系统性能。对于机载预警(AEW)雷达尤其如此,它应该找到远程和小型雷达横截面(RCS)目标,例如隐形飞机和导弹。但是,在现有的机载雷达文献中,STAP主要用于侧视机载雷达(SLAR)应用中的杂波和干扰抑制。带有非侧视阵列雷达(非SLAR)的机载雷达的讨论很少。非SLAR的STAP(例如前视阵列雷达)也非常重要,对于机载雷达全方位探测目标而言,这是无法避免的。在此研究非SLAR的STAP。提出了一种方案,该方案通过STAP与多个交错的中脉冲重复频率(PRF)相结合进行处理。我们将进一步研究PRF的选择,以使该方案更适用于非SLAR雷达。我们分析了两种典型的非SLAR情况,即倾斜侧视阵列和前视阵列。我们通过在距离-速度盲区最小化标准下比较三个处理系统的性能来研究该方案。计算机仿真结果表明,多PRF STAP方案对于非SLAR是可行的,并且可以应用于相控阵AEW雷达系统

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