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机载火控雷达空时离散捷变波形设计技术研究

程远 莫修辞 顾铭 汤俊

空间电子技术2025,Vol.22Issue(2):86-99,14.
空间电子技术2025,Vol.22Issue(2):86-99,14.DOI:10.3969/j.issn.1674-7135.2025.02.010

机载火控雷达空时离散捷变波形设计技术研究

Space-time discrete agile waveform design for airborne fire control radar

程远 1莫修辞 2顾铭 2汤俊3

作者信息

  • 1. 中国航空工业集团公司雷华电子技术研究所,无锡 214082||清华大学电子工程系,北京 100084
  • 2. 中国航空工业集团公司雷华电子技术研究所,无锡 214082
  • 3. 清华大学电子工程系,北京 100084
  • 折叠

摘要

Abstract

Recently,with the rapid development of electronic device capabilities,the airborne fire control radar faced more urgent challenges in anti-jamming and low probability of intercept requirements.Radar waveform design also requires further development.Traditional radar waveform usually contains modulation in the time,frequency and phase domain dimensions,with relatively poor anti-jamming and low probability of intercept capabilities.This paper proposed a new space-time discrete waveform,which extends the dimensions of radar waveform in spatial scanning and dwell modes.That provided higher degrees of freedom for airborne fire control radar waveform.For the design and processing of space-time discrete waveforms,a space-time discrete scanning mode is established,and a gate lode lobe cancellation method based on pulse extraction is proposed.A discrete scanning waveform optimization model is established based on jitter parameters and inter-group intervals to reduce the sidelobe of doppler signals by waveform parameter optimization.The simulation results indicate that the space-time discrete waveform has less spatial scanning dwell time compared with the traditional sequential scanning waveform.The proposed waveform optimization algorithm can improve the peak sidelobe ratio by more than 15dB,achieving better anti-jamming and low probability intercept performance of airborne fire control radar.

关键词

机载火控雷达/波形优化/空时离散/波形设计

Key words

airborne fire control radar/waveform optimization/space-time discrete/waveform design

分类

航空航天

引用本文复制引用

程远,莫修辞,顾铭,汤俊..机载火控雷达空时离散捷变波形设计技术研究[J].空间电子技术,2025,22(2):86-99,14.

基金项目

江苏省卓越博士后基金项目(编号:2023ZB779) (编号:2023ZB779)

空间电子技术

1674-7135

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