...
首页> 外文期刊>IEEE Transactions on Antennas and Propagation >X-band transhorizon measurements of CW transmissions over the sea-Part I: path loss, duration of events, and their modelling
【24h】

X-band transhorizon measurements of CW transmissions over the sea-Part I: path loss, duration of events, and their modelling

机译:海上连续波传输的X波段超视距测量-第一部分:路径损耗,事件持续时间及其建模

获取原文
获取原文并翻译 | 示例

摘要

This article presents measurements, analysis, and modelling of path loss and duration of events obtained in a transhorizon experiment over the English Channel (La Manche, operated from 1987 to 1991, totalling 3708 valid data days and using five paths with three radiofrequencies at X-band. An overview of the equipment, operation and data acquisition, and processing is first given. The study reveals that the decibel path loss is normally distributed but exhibits three distinct regions of normality: path losses with probability of occurrence greater than about 1% reflect propagation dominated by several propagation mechanism. The second region, which can be clearly identified with probabilities of path loss below about 1%, reflects the various anomalous propagation mechanisms, and these are identified and discussed. The experimental median is compared with the value derived using several prediction methods, one of which is found to agree well with only a few decibels of difference. On the other hand, the existing CCIR prediction for small time percentages under values the strongest enhancements found. The continuous reduction of path loss below a given threshold L (decibels) constitutes an event with some duration. The analysis has shown that the conditional distribution Prob (D'or=L) that events last longer than D minutes is log-normal, is very skewed, and is the same for all types of propagation conditions. It is found that the signal level can rise from the troposcatter median to above the free space value and stay there continuously for periods of time which can range from a few minutes to well over one hour. The data base and modelling of L and D are given in detail.
机译:本文介绍了在英吉利海峡(La Manche,从1987年至1991年运行,共3708个有效数据日,并使用在X-首先对设备,操作和数据采集以及处理进行了概述,该研究表明,分贝路径损耗呈正态分布,但呈现出三个不同的正态性区域:发生概率大于1%的路径损耗反映出传播受到几种传播机制的支配,第二个区域可以清晰地识别,路径损耗的概率低于1%,反映了各种异常传播机制,并进行了讨论,将实验中位数与使用有几种预测方法,其中一种被发现与几个分贝之间的差异非常吻合。另一方面,现有的CCIR预测在时间百分比较小的情况下仍能找到最强的增强值。路径损耗连续降低到给定阈值L(分贝)以下会构成一个持续时间较长的事件。分析表明,事件持续时间超过D分钟的条件分布Prob(D'or = D / L'> or = L)是对数正态的,非常偏斜,并且对于所有类型的传播条件都是相同的。发现信号电平可以从对流散射中位数上升到自由空间值以上,并连续在那里停留一段时间,时间范围可能从几分钟到一小时以上。详细给出了L和D的数据库和建模。

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