首页> 外文期刊>Radar, Sonar & Navigation, IET >Experimental demonstration and analysis of cognitive spectrum sensing and notching for radar
【24h】

Experimental demonstration and analysis of cognitive spectrum sensing and notching for radar

机译:雷达认知频谱感知与陷波的实验演示与分析

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

Spectrum sensing and transmit notching is a form of cognitive radar that seeks to reduce mutual interference with other spectrum users in the same band. This concept is examined for the case where another spectrum user moves in frequency during the radar's CPI. The physical radar emission is based on a recent FM noise waveform possessing attributes that are inherently robust to sidelobes that otherwise arise for spectral notching. Due to increasing spectrum sharing with cellular communications, the interference considered takes the form of in-band OFDM signals that hop around the band. The interference is measured each PRI and a fast spectrum sensing algorithm determines where notches are required, thus facilitating a rapid response to dynamic interference. To demonstrate the practical feasibility and to understand the trade-space such a scheme entails, free-space experimental measurements based on notched radar waveforms are collected and synthetically combined with separately measured hopping interference under a variety of conditions to assess the efficacy of such an approach, including the impact of interference hopping during the radar CPI, latency in the spectrum sensing/waveform design process, notch tapering to reduce sidelobes, notch width modulation due to spectrum sensing, and the impact of digital up-sampling on notch depth.
机译:频谱感测和发射陷波是认知雷达的一种形式,旨在减少与同一频带中其他频谱用户的相互干扰。对于在雷达CPI期间另一个频谱用户在频率上移动的情况,将研究此概念。物理雷达发射基于最近的FM噪声波形,该波形具有对旁瓣固有固有的鲁棒性,否则旁瓣会因频谱陷波而出现。由于增加了与蜂窝通信的频谱共享,因此考虑的干扰采取了在频带内跳跃的带内OFDM信号的形式。每个PRI都会测量干扰,而快速频谱感应算法会确定需要陷波的位置,从而有助于快速响应动态干扰。为了证明这种方案的实际可行性并了解交易空间,收集了基于陷波雷达波形的自由空间实验测量值,并在各种条件下与单独测量的跳变干扰进行了综合组合,以评估这种方法的有效性包括雷达CPI期间的跳频干扰,频谱感测/波形设计过程中的等待时间,用于减少旁瓣的陷波渐缩,频谱感测引起的陷波宽度调制以及数字上采样对陷波深度的影响。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号