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灵巧调制互补编码的探干一体化波形设计

郭永刚 王志川 陆星宇 杨建超 顾红

现代雷达2026,Vol.48Issue(1):68-76,9.
现代雷达2026,Vol.48Issue(1):68-76,9.DOI:10.16592/j.cnki.1004-7859.20240508001

灵巧调制互补编码的探干一体化波形设计

A Waveform Design for Integrated Radar and Jamming Based on Smart Modulation and Complementary Coding

郭永刚 1王志川 2陆星宇 2杨建超 2顾红2

作者信息

  • 1. 陕西烽火通信集团有限公司,陕西 西安 710100
  • 2. 南京理工大学 电子工程与光电技术学院,江苏 南京 210094
  • 折叠

摘要

Abstract

Waveform design for integrated radar and jamming is generally based on the concept of shared waveform,which uses jam-ming signals without typical radar signal characteristics for detection.Existing waveforms have shown limited design flexibility,high levels of sidelobe in detection results,and overall ordinary performance.Simulation analysis and experimental.We propose an inte-grated radar and jamming waveform based on smart modulation and complementary coding.In traditional integrated radar and jamming waveform based on smart modulation,the phase angle of the binary phasecoded sequence is adjustable in this smart modulation meth-od,allowing for a controllable jamming effect.However,this smart modulation waveform also suffers from high sidelobes in detec-tion.To address this issue,a complementary coding approach is taken and design a smart modulation waveform is designed with com-plementary characteristics.This waveform can synthesize a complete linear frequency modulation(LFM)signal by adding two pulses together,thereby reducing the sidelobes in the smart modulation waveform and enhancing its detection performance.Theoretical analy-sis indicates that the detection and jamming effects of this integrated waveform can be flexibly controlled by adjusting the phase angles of the coding sequences.Simulation analysis and experimental results confirm the significant advantages of this waveform.

关键词

雷达探测干扰一体化/波形设计/相位编码序列/互补编码

Key words

radar detection and jamming integration/waveform design/phase-coded sequence/complementary coding

分类

信息技术与安全科学

引用本文复制引用

郭永刚,王志川,陆星宇,杨建超,顾红..灵巧调制互补编码的探干一体化波形设计[J].现代雷达,2026,48(1):68-76,9.

基金项目

国家自然科学基金资助项目(62101264) (62101264)

江苏省自然科学基金资助项目(BK20230915) (BK20230915)

现代雷达

1004-7859

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