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Moving-in-pulse duration model-based target integration method for HSV-borne high-resolution radar

机译:基于脉冲持续时间模型的HSV传播高分辨率雷达的目标集成方法

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Hypersonic vehicles (HSVs) offer great advantages over airplanes and satellites, owing to their hypersonic speeds and flexible trajectories. However, HSV-borne radar may suffer from performance degradation if traditional target integration methods with stop-and-go (SAG) approximation are applied; this is especially true for high resolution radar and applications that utilize long-time coherent integration. In this paper, we consider the effects of moving-in-pulse duration (MPD) to derive an HSV-borne radar signal model without SAG approximation by specifically characterizing platform motion during the transmission and reception of a pulse. An explicit formula for wavenumber domain echo is derived using the 2-D joint stationary phase method. To mitigate the pulse-dependent echo distortion induced by the MPD effect, a target integration method based on the omega-K algorithm is proposed; this method employs revised filters for bulk focusing and revised Stolt interpolation for differential focusing to improve the overall focusing quality. The paper discusses the ambiguity functions of in-range MPD echo models, and describes the performance metrics for the integration results in both dimensions, including impulse response width (IRW), peak sidelobe ratio (PSLR), and integrated sidelobe ratio (ISLR). Simulation results have verified the effectiveness of the proposed method in MPD circumstances. (C) 2017 Elsevier Inc. All rights reserved.
机译:由于其超高速速度和灵活的轨迹,超音速车辆(HSV)提供了良好的飞机和卫星的优势。然而,如果使用停止和去(SAG)近似的传统目标集成方法,HSV传送的雷达可能遭受性能劣化;对于利用长时间连贯集成的高分辨率雷达和应用尤其如此。在本文中,我们考虑移动脉冲持续时间(MPD)的影响来导出HSV传播的雷达信号模型,而通过特定地表征在脉冲期间的平台运动而不是特定表征平台运动。使用2-D联合固定相法导出波数域回波的显式公式。为了缓解由MPD效应引起的脉冲依赖性回声失真,提出了一种基于OMEGA-K算法的目标积分方法;该方法采用修改过的滤波器,用于散装聚焦和修改的差分聚焦的反静电插补,以提高整体聚焦质量。本文讨论了范围内MPD回波模型的模糊函数,并描述了整合的性能度量,这两种尺寸都导致脉冲响应宽度(IRW),峰值侧倍波比(PSLR)和集成的Sidelobe比率(ISLR)。仿真结果已经验证了拟议方法在MPD情况下的有效性。 (c)2017年Elsevier Inc.保留所有权利。

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