系统工程与电子技术 ›› 2022, Vol. 44 ›› Issue (12): 3614-3620.doi: 10.12305/j.issn.1001-506X.2022.12.04

• 电子技术 • 上一篇    

双模式侦察干扰一体化技术

杨康*, 郝汀, 赵明峰, 黄伟   

  1. 中国船舶重工集团公司第七二三研究所, 江苏 扬州 225001
  • 收稿日期:2021-10-11 出版日期:2022-11-14 发布日期:2022-11-24
  • 通讯作者: 杨康
  • 作者简介:杨康 (1983—), 男, 高级工程师, 博士, 主要研究方向为电子对抗总体技术、信号与信息处理技术|郝汀 (1989—), 男, 工程师, 硕士, 主要研究方向为电子对抗总体技术、信号与信息处理技术|赵明峰 (1989—), 男, 工程师, 硕士, 主要研究方向为电子对抗总体技术、信号与信息处理技术|黄伟 (1991—), 男, 工程师, 硕士, 主要研究方向为电子对抗总体技术、信号与信息处理技术

Dual-mode reconnaissance and jamming integration technology

Kang YANG*, Ting HAO, Mingfeng ZHAO, Wei HUANG   

  1. No.723 Research Institute, China State Shipbuilding Corporation Limited, Yangzhou 225001, China
  • Received:2021-10-11 Online:2022-11-14 Published:2022-11-24
  • Contact: Kang YANG

摘要:

针对电子对抗领域中侦察干扰一体化的应用需求以及对宽、窄带雷达的作战需求, 提出了一种基于数字收发信道化和数字并行上下变频结构的双模侦察干扰一体化架构。重点研究了无盲区50%重叠收发信道化的实现原理; 并建立了仿真模型, 评估了其对宽窄带信号的重构能力, 在此基础上得出了两种模式协同工作的策略和依据。通过双模协同工作, 不仅可实现对不同带宽信号的参数测量, 还能自适应地进行数字储频并重构高线性度、低杂散的干扰信号。

关键词: 电子对抗, 侦干一体, 双模式, 数字储频

Abstract:

According to the application requirements of reconnaissance and jamming integration in the field of electronic countermeasures and the operational requirements of wide and narrow band radar, a dual-mode reconnaissance and jamming integration architecture based on digital transceiver channelization and digital parallel up-down conversion structure is proposed in this paper. The implementation of transceiver based on 50% overlapping channel overlap without blind area is studied; and simulation model is established and its ability to reconstruct wide and narrow band signals is evaluated. On this basis, the strategy and basis of the two modes working together are obtained. Through dual-mode cooperative work, it cannot only measure the parameters of signals with different bandwidth, but also adaptively store digital radio frequency and reconstruct jamming signals with high linearity and low spurious.

Key words: electronic countermeasure, integration of reconnaissance and jamming, dual mode, digital radio frequency memory (DRFM)

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