作为雷达特征集的模态有序形状因子

IF 1.4 4区 管理学 Q3 ENGINEERING, ELECTRICAL & ELECTRONIC Iet Radar Sonar and Navigation Pub Date : 2024-06-24 DOI:10.1049/rsn2.12610
Salem Salamah, Faisal Aldhubaib
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引用次数: 0

摘要

特征偏振态通过反映目标的形状属性形成第二层特征集,使共振特征具有更好的识别性能。这些形状因子分别通过确定与空极化状态相关的两个特征角度以及最佳最大和最小接收功率的比值来反映结构的曲率范围、角之间的二面程度以及主轴之间的轴向比值。然而,由于噪声、遮挡导致的共振缺失或晚期起始时间的模糊性,形状因子的准确性会随着共振特征估计不足而降低。因此,作者利用集合平均法过滤噪声并增强信号强度,正确选择模态阶次以确保特征的模态一致性,并利用衰减和(DS)来正确选择后期时间起始点,以避免极化矩阵中的共振缺失,从而减少这些问题的影响。最后,两架喷气式战斗机的范例验证了这些因素在低凹陷角方位面上的分辨潜力。结果表明,在大多数共振模式和方位角方向上,0.4 左右的 DS 提高了估计因子。在大多数目标方位上,一阶形状因子始终预测主要的平行楔形结构,而二阶形状因子始终预测槽形结构;最后,三阶因子在前视方位上显示楔形属性,而在后视方位上显示槽形属性。
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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Modal ordered shape factors as radar feature set

The characteristic polarisation states form a second layer feature set by reflecting shape attributes about that target, enabling better identification performance of the resonance signature. These shape factors reflect a structure's curvature extent, dihedral degree between corners, and the axial ratio between principal axes by determining two characteristic angles associated with the null polarisation state and a ratio of the optimum maximum and minimum received powers, respectively. However, the accuracy of the shape factors degrades with a poorly estimated resonance signature caused by noise, missing resonance due to occlusion or ambiguity in late time onset. Thus, the authors aim to reduce the effect of these problems using an ensemble average to filter noise and enhance the signal strength, properly selecting a modal order to ensure modal consistency of the signature and decay sum (DS) to select the late time onset properly to avoid missing resonance within the polarisation matrix. Finally, a paradigm of two jetfighters validated the factors' discriminative potential across an azimuth plane of low depression angle. The results showed that a DS around 0.4 improves the estimated factors over most resonance modes and azimuth directions. At most target aspects, the first-order shape factors consistently predicted a dominant parallel wedge-shaped structure, while the second-order shape factors consistently predicted a trough-shaped structure; finally, the third-order factors revealed wedge-shape attributes at forward look aspects but trough-shaped attributes at backward look aspects.

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来源期刊
Iet Radar Sonar and Navigation
Iet Radar Sonar and Navigation 工程技术-电信学
CiteScore
4.10
自引率
11.80%
发文量
137
审稿时长
3.4 months
期刊介绍: IET Radar, Sonar & Navigation covers the theory and practice of systems and signals for radar, sonar, radiolocation, navigation, and surveillance purposes, in aerospace and terrestrial applications. Examples include advances in waveform design, clutter and detection, electronic warfare, adaptive array and superresolution methods, tracking algorithms, synthetic aperture, and target recognition techniques.
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