首页> 外文会议>IEEE International Conference on Electronic Measurement Instruments >The impact of multipath effect on jamming of active decoy outboard
【24h】

The impact of multipath effect on jamming of active decoy outboard

机译:多径效应对活性诱饵舷外干扰的影响

获取原文

摘要

Multipath effect of sea surface has an impact on jamming of active decoy oidboard. Firstly, the model of multipath effect of sea surface has been determined. Study of multipath effect is based on the simplest model of mirror reflection, in which it is assumed that mirror target is just below real target and that flat ground surface achieves good electrical conductivity. In the case of mirror reflection, it can be solved by studying the relation with reflection of flat ground surface. Secondly, CCIR mathematical model of active jamming under multipath effect has been presented. Plural permittivity of electromagnetism characteristic and reflection characteristic over the ocean are researched. Varying rule of the seawater relative Permittivity, the sea water conductivity, reflection coefficient over slick offing and modified factor over crude offing are analyzed through stimulation. Sea state is used as wave height partitioning adopted by Douglas.Main factor that influence their change is gained. Lastly, impact of multipath effect on active decoy jamming under typical conditions has been analyzed by simulation. It is pointed out that under high level of sea state when roughness of sea surface increases multipath effect will decrease, while under low level of sea state when roughness of sea surface decreases multipath effect willincrease. Also when height of active decoy jamming outboard increases energy fluctuation ofjamming signal will decrease.
机译:海面的多路径效应对活跃诱饵鹿板的干扰产生了影响。首先,已经确定了海面的多径效应模型。多径效应的研究基于最简单的镜面反射模型,其中假设镜子目标在实际目标下方并且平坦的地面实现了良好的导电性。在镜面反射的情况下,可以通过研究与扁平地面的反射关系来解决。其次,提出了多径效应下的主动干扰的CCIR数学模型。研究了海洋电磁特性和反射特性的多元介电常数。通过刺激分析了海水相对介电常数,海水导电性,过度消退和修饰因子的思考系数。海州被用作道格拉斯队采用的波浪高度分区。增加影响其变化的因素。最后,通过模拟分析了在典型条件下对典型条件下活性诱饵干扰的影响。有望指出,在海面粗糙度增加的海区高水平的海区下降将减少,而海面粗糙度的海区低水平降低了多路径影响。而且当活跃诱饵干扰舷外的高度增加时,jamming信号的能量波动会降低。

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