增强低信噪比条件下的多目标探测能力

Q3 Earth and Planetary Sciences
B. Neeraja, N. V. Koteswara Rao, B. Rajendra Naik
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引用次数: 0

摘要

电子战是一种使用电磁辐射来识别、开发、限制或禁止使用电磁频谱的军事行动。本文的主要目的是提高噪声条件下电子战系统中多目标的距离分辨率。多信号分类(MUSIC)是一种高分辨率算法,它与去噪技术相结合,增强了数字接收机检测多目标的能力。第一阶段采用Savitzky - Golay滤波器作为预处理滤波器,第二阶段采用新颖的去噪技术实现更好的目标检测和识别。这种对MUSIC算法的修改旨在解决其在噪声存在和目标接近时的局限性,从而提高电子战场景中的性能。利用该方法,我们能够检测到信噪比为- 12 dB的3(3)个目标频率和信噪比为- 19 dB的4(4)个目标频率,估计频率的误差百分比为0.58%。优化后的计算复杂度是突出的优势,使该方法比其他方法更有效。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Enhancing multi-target detection in low SNR conditions

Enhancing multi-target detection in low SNR conditions

Enhancing multi-target detection in low SNR conditions

Electronic Warfare is a type of military operation that uses electromagnetic radiation to identify, exploit, limit, or prohibit the use of the electromagnetic spectrum. The main objective of this paper is to improve the range resolution of multiple targets in Electronic Warfare systems under noisy conditions. Multiple Signal Classification (MUSIC), a high-resolution algorithm is used with denoising techniques to enhance the ability of digital receivers to detect multiple targets. The Savitzky Golay filter is used in the first stage as a pre-processing filter, and the novel noise removal technique is used in the second stage to achieve better target detection and discrimination. This modification to the MUSIC algorithm aims to address its limitations in the presence of noise and when targets are in proximity, resulting in improved performance in Electronic Warfare scenarios. Using the proposed method, we are able to detect three (3) target frequencies up to SNR of − 12 dB and four (4) target frequencies up to SNR of − 19 dB, with the percentage of error in the estimation of frequency is 0.58%. The optimized computation complexity is highlighted as a strength, making the proposed method more efficient compared to alternative approaches.

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来源期刊
Aerospace Systems
Aerospace Systems Social Sciences-Social Sciences (miscellaneous)
CiteScore
1.80
自引率
0.00%
发文量
53
期刊介绍: Aerospace Systems provides an international, peer-reviewed forum which focuses on system-level research and development regarding aeronautics and astronautics. The journal emphasizes the unique role and increasing importance of informatics on aerospace. It fills a gap in current publishing coverage from outer space vehicles to atmospheric vehicles by highlighting interdisciplinary science, technology and engineering. Potential topics include, but are not limited to: Trans-space vehicle systems design and integration Air vehicle systems Space vehicle systems Near-space vehicle systems Aerospace robotics and unmanned system Communication, navigation and surveillance Aerodynamics and aircraft design Dynamics and control Aerospace propulsion Avionics system Opto-electronic system Air traffic management Earth observation Deep space exploration Bionic micro-aircraft/spacecraft Intelligent sensing and Information fusion
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