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Investigation of Optimum Temporal Update Periods for Regional TEC Monitoring

机译:区域TEC监测最佳时间更新期的调查

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Monitoring of the ionospheric variability is necessary for improving the performance of communication, navigation and positioning systems. Total Electron Content (TEC) is an important parameter since it can be used to analyze the variability of the ionosphere. Due to sparse distribution of samples, TEC can not be directly obtained everywhere on the ionosphere and accurate interpolation methods are needed for generating TEC maps. The optimum temporal update period (TUP) for regional Total Electron Content (TEC) monitoring has to be determined for capturing significant variations. In this study, the wide sense stationary (WSS) period is investigated whether it is possible to use the estimated WSS periods as the TUPs of the regional TEC maps. The sliding window statistical analysis method is used to estimate the WSS period. The WSS periods are compared with the difference between the maps obtained by Ordinary Kriging (OK) method. It is observed that the maximum WSS periods are following the length of time delays between the TEC maps at which the first significant difference occurs. The minimum WSS periods have to be used if the small variations are needed to be monitored within the day of interest. The WSS periods can be used as the TUPs for the regional TEC monitoring and can be adaptively adjusted.
机译:为改善通信,导航和定位系统的性能,需要监测电离层变异性。总电子含量(TEC)是重要参数,因为它可用于分析电离层的可变性。由于样品的稀疏分布,因此不能直接在电离层和准确的插值方法上直接获得TEC,以产生TEC地图。必须确定用于捕获显着变化的区域总电子含量(TEC)监测的最佳时间更新期(Tup)。在这项研究中,研究了广义静止(WSS)期间是否有可能使用估计的WSS时段作为区域TEC地图的TUP。滑动窗口统计分析方法用于估计WSS时段。将WSS周期与普通克里格(OK)方法获得的地图之间的差进行进行比较。观察到,最大WSS周期遵循第一个显着差异发生的TEC地图之间的时间延迟长度。如果需要在感兴趣的一天内需要进行小的变化,则必须使用最小的WSS周期。 WSS周期可用作区域TEC监控的TUP,可以自适应地调整。

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