首页> 外文会议>Conference on remote sensing of clouds and the atmosphere >Study of tropospheric slant delay retrieved from the IRNSS
【24h】

Study of tropospheric slant delay retrieved from the IRNSS

机译:从IRNSS检索的对流层倾斜延迟的研究

获取原文

摘要

Position estimation of the target is essential in all fields- agriculture, forestry, defense, aviation, remote sensing, communication, maritime and shipping, navigation, railways, road transport and safety, urban planning and development, land survey, and climate study, etc. While the accurate position is the most important aspect of remote sensing, the attainment of it is a challenge. In navigation systems, the error in position estimation occurs due to various factors, viz. the presence of electrons in the ionosphere, the satellite and receiver clock offset, multipath effect, the non-uniform refractive index of the troposphere, the error due to PRN code noise and noise within the receiver, and errors in the ephemeris data, to name a few. In this paper, the authors have attempted to give an account of precision of position estimation by the Indian Regional Navigation Satellite System (IRNSS), by estimating the total slant delay caused to the satellite signal. The total slant delay (TSD) in the troposphere is caused due to the change in refractive index in the troposphere. The non-uniform refractive index is caused due to variation in temperature, pressure, and water vapor present in the troposphere. The non-uniform refractive index causes the refraction of the signal causing bending and slowing. The paper presents the diurnal, daily, and monthly variations of total slant delay (TSD) over a few tropical locations in India, namely Bhubaneswar (20.14°N, 85.67°E), Gandaki (13.45°N, 79.16°E), Goa (15.45°N, 73.81°E), Kanakapura (12.54°N, 77.429°E), and Kolkata (22.53°N, 88.33°E). In an attempt to find out the factors that govern the TSD, in this paper, the authors have analyzed a few meteorological elements, viz. the surface pressure (SP), surface temperature (ST), relative humidity (RH), and integrated precipitable water (IPWV). They have also studied the dependence of TSD on the total solar irradiance (TSI). The study reveals that the TSD follows the solar cycle. Besides, the study further shows the relationship between the TSD and the meteorological elements mentioned above. The investigation shows that the total slant delay (TSD) retrieved from the different satellites in the IRNSS constellation is different. Thus, for accurate position estimation of the target, it is necessary to take an average of TSD estimated by all the satellites. The diurnal variation of TSD shows that in a month, every day its crests occur at regular intervals. The troughs of TSD also recur after a fixed interval. The periodicity of the crests and troughs is uniform throughout a particular month, i.e. the crests occur exactly at the same time every day at regular intervals; so also the troughs. This observation led the authors to investigate the solar cycle. The study reveals that both TSD and total solar irradiance replicates each other. The study also indicates that total slant delay decreases as the elevation of the satellite w.r.t. the Earth's station increases.
机译:目标的位置估计在所有领域 - 农业,林业,国防,航空,遥感,通信,海运,航行,铁路,公路运输和安全,城市规划和发展,土地调查和气候研究等。虽然准确的位置是遥感最重要的方面,但它的实现是一项挑战。在导航系统中,由于各种因素,viz发生了位置估计中的错误。在电离层电子的存在,卫星和接收机时钟偏移,多径效应,对流层的非均匀折射率,误差由于PRN码的噪声和噪声的接收器内,和错误在星历表数据,以名称一些。在本文中,作者试图通过估计对卫星信号引起的总倾斜延迟来表示印度区域导航卫星系统(IRNSS)的位置估计精度。对流层中的总倾斜延迟(TSD)是由于对流层折射率的变化导致。由于对流层中存在的温度,压力和水蒸气的变化,因此引起了不均匀的折射率。非均匀折射率导致信号的折射导致弯曲和速度。本文介绍了印度少数热带地区的户外倾斜延迟(TSD)的日,每月和每月变化,即Bhubaneswar(20.14°N,85.67°E),Gandaki(13.45°N,79.16°E),果阿(15.45°N,73.81°E),Kanakapura(12.54°N,77.429°E)和Kolkata(22.53°N,88.33°E)。在这篇论文中,找出控制TSD的因素,作者已经分析了一些气象元素,Ziz。表面压力(SP),表面温度(ST),相对湿度(RH)和集成的易燃水(IPWV)。他们还研究了TSD对总太阳辐照度(TSI)的依赖。该研究表明,TSD遵循太阳循环。此外,该研究进一步示出了TSD与上述气象元素之间的关系。该研究表明,从IRNSS星座中的不同卫星检索的总倾斜延迟(TSD)是不同的。因此,为了准确地估计目标,必须平均所有卫星估计的TSD。 TSD的昼夜变化表明,在一个月内,其冠定在一个月内每天定期发生。 TSD的槽也经过固定间隔后重复。的波峰和波谷的周期是整个特定月份均匀,每天恰好发生即波峰同时以规则的间隔;也是低谷。这种观察导致作者调查太阳循环。该研究表明,TSD和总太阳辐照度均互相复制。该研究还表明,作为卫星W.R.T的升高,总倾斜延迟减少。地球的电台增加了。

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