Based on coordinates differential modes, using Portable GPS Receiver by near\|real time process, the positioning precision is about ±5 m. It can be used in forest to do many positioning. Position test to be done ...Based on coordinates differential modes, using Portable GPS Receiver by near\|real time process, the positioning precision is about ±5 m. It can be used in forest to do many positioning. Position test to be done under crown measuring more than 4 satellites by synchronous measure, positioning precision is less than ±5 m. When measure time is more than 20 minutes. In addition, why differential\|positioning precision is better has been analyzed.展开更多
为了建立电离层延迟模型来确定电离层对电磁波传播的影响,以电子密度的分布为研究对象,根据基本折射理论分析电离层的色散效应,对电离层延迟原因进行分析,研究电离层总电子含量TEC(Total Electron Content)对其影响,并且此影响与卫星信...为了建立电离层延迟模型来确定电离层对电磁波传播的影响,以电子密度的分布为研究对象,根据基本折射理论分析电离层的色散效应,对电离层延迟原因进行分析,研究电离层总电子含量TEC(Total Electron Content)对其影响,并且此影响与卫星信号频率有关。利用GPS双频接收机和投影函数建立电离层的单层VTEC(Vertical Total Electron Content)多项式模型,在大庆进行实地连续观测获取相关数据,建立了大庆地区的电离层延迟模型。总结VTEC昼夜变化规律,并对结果进行了分析和说明。展开更多
文摘Based on coordinates differential modes, using Portable GPS Receiver by near\|real time process, the positioning precision is about ±5 m. It can be used in forest to do many positioning. Position test to be done under crown measuring more than 4 satellites by synchronous measure, positioning precision is less than ±5 m. When measure time is more than 20 minutes. In addition, why differential\|positioning precision is better has been analyzed.
文摘为了建立电离层延迟模型来确定电离层对电磁波传播的影响,以电子密度的分布为研究对象,根据基本折射理论分析电离层的色散效应,对电离层延迟原因进行分析,研究电离层总电子含量TEC(Total Electron Content)对其影响,并且此影响与卫星信号频率有关。利用GPS双频接收机和投影函数建立电离层的单层VTEC(Vertical Total Electron Content)多项式模型,在大庆进行实地连续观测获取相关数据,建立了大庆地区的电离层延迟模型。总结VTEC昼夜变化规律,并对结果进行了分析和说明。