首页> 外文会议>SPIE Conference on Optics in Atmospheric Propagation and Adaptive Systems >Seasonal Ionospheric Scintillation Analysis during Increasing Solar Activity at Mid-Latitude
【24h】

Seasonal Ionospheric Scintillation Analysis during Increasing Solar Activity at Mid-Latitude

机译:中际太阳能活动期间的季节性电离层闪烁分析

获取原文

摘要

Monitoring of ionospheric parameters(such as Total Electron Content and scintillation)is of great importance as it affects and contributes to the errors encountered by radio signals. It thus requires constant measurements to avoid disastrous situation for space agencies, parastatals and departments that employ GNSS applications in their daily operations. The research objective is to have a better understanding of the behaviour of ionospheric scintillation at mid-latitude as it threatens the performances of satellite communication, navigation systems and military operations. This paper adopts seasonal ionospheric scintillation scenario. The mid-latitude investigation of ionospheric effect of scintillation was conducted during the increasing solar activity from 2011-2015. Ionospheric scintillation data were obtained from four ionospheric monitoring stations located at mid-latitude(i.e Shenzhen North Station, Beijing Changping North Station Branch, Beijing North Station and Beijing Miyun ground Station). The data was collected from January 2011 to December 2015. There were absence of data due to software problem or system failure at some locations. The scintillation phenomenon was computed using Global Ionospheric Scintillation and TEC Monitoring Model. There are four seasons which existed in China namely: Spring, Summer,Autumn and Winter. The relationship between TEC, amplitude and phase scintillation were observed for each of these seasons. The results indicated that the weak amplitude scintillation was observed as against phase scintillation which was high. Phase scintillation was gradually enhanced from 2011 to 2012 and later declined till 2014. TEC was also at peak around 00:00-10:00 UT(08:00-18:00 LT). The seasonal events temporal density characteristics comply with solar cycle prediction as such it ascended from 2011 to 2013 and then scintillation parameters declined significantly afterwards.
机译:监测电离层参数(例如全电子含量和闪烁)的监测非常重要,因为它影响并有助于无线电信号所遇到的错误。因此,它需要不断测量,以避免雇用GNSS应用在日常行动中的太空机构,寄生虫和部门的灾难性情况。研究目标是更好地了解中纬度地区电离层闪烁的行为,因为它威胁着卫星通信,导航系统和军事行动的性能。本文采用季节性电离层闪烁场景。在2011-2015的太阳活性增加期间对闪烁电离层效应的中间纬度研究。离电离层闪烁数据是从位于纬度的四个电离层监测站获得(I.E深圳北站,北京北驻地分公司,北京北站和北京宫云地面站)。从2011年1月到2015年12月收集了数据。由于某些地方的软件问题或系统故障,缺乏数据。使用全局电离层闪烁和TEC监测模型计算闪烁现象。中国存在四个季节:春天,夏天,秋冬。对于这些季节中的每一个,观察到TEC,幅度和相闪烁之间的关系。结果表明,观察到弱振幅闪烁作为高闪烁的闪烁。从2011年到2012年逐渐增强相闪烁,后来在2014年下降到2014年。TEC也在00- 00-10:00 UT(08:00-18:00 Lt)左右峰值。季节性事件时间密度特征符合太阳循环预测,因为从2011年到2013年提升,然后闪烁参数之后显着下降。

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