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A further study on nonlinear space-time adaptive processing with higher order statistics

机译:具有高阶统计量的非线性时空自适应处理的进一步研究

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Many array processing methods with higher order statistics (HOS) have been developed in the last three decades. One of the main interests in using HOS relies on the increase of effective aperture and the number of sensors of the considered array. In particular, a nonlinear space-time adaptive processing (STAP) method using HOS, which is able to enhance the system degrees of freedom (DOFs), has been employed on the radar system with nested array in recent years. In this work, we further study the nonlinear space-time adaptive processing with HOS (HOS-STAP) based on the phased array radar system with uniform linear array (ULA). The purpose of this paper is to provide some important insights into the HOS-STAP, such as the output response, the SINR, the minimum detectable velocity (MDV) and the effect of internal clutter motion (ICM), via the numerical experiment. The simulations are also carried out for contrast with the conventional STAP. The results illustrate that the HOS-STAP can gain a narrower target main beam, a lower side-lobe level, an improvement of MDV performance and a less negative effect of ICM, under the condition of the same number of the array elements and the transmitting pulses.
机译:在过去的三十年中,已经开发出许多具有高阶统计量(HOS)的阵列处理方法。使用HOS的主要兴趣之一取决于有效孔径的增加和所考虑阵列的传感器数量。特别地,近年来,在具有嵌套阵列的雷达系统上已经采用了能够提高系统自由度(DOF)的,使用HOS的非线性时空自适应处理(STAP)方法。在这项工作中,我们进一步研究了基于具有均匀线性阵列(ULA)的相控阵雷达系统的基于HOS的非线性时空自适应处理(HOS-STAP)。本文的目的是通过数值实验提供一些对HOS-STAP的重要见解,例如输出响应,SINR,最小可检测速度(MDV)和内部杂波运动(ICM)的影响。为了与常规STAP进行对比,还进行了仿真。结果表明,在相同数目的阵列元件和发射的条件下,HOS-STAP可以获得较窄的目标主波束,较低的旁瓣电平,MDV性能的改善以及ICM的负面影响较小。脉冲。

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