电离层的时间、空间的变化能影响我们的每日的通讯活动。由解决一个年在 2012 的山东连续运作的参考系统(SDCORS ) 的全球放系统(GPS ) 数据,我们在山东省上为垂直全部的电子内容(侦探) 的单个层的球形的泛音模型建模,中国,并且在 2012 分析了侦探的时间系列。在在 2012 的山东上的电离层在太阳的活动的山峰年里。在山东上的 ionospheric 模型被校准并且验证了分别地在欧洲(代码) 和中国(CMONOC ) 的外壳的运动观察网络使用轨道决心的中心的数据。电离层被纬度和太阳的活动极大地影响并且有冬季异例和一年两次的异例以及会议变化的现象,日报变化,每月的变化和季节的变化。我们能因此在山东上掌握电离层的时间、空间的分发的整齐,中国。
Temporal and spatial variation of ionosphere can influence our daily communication activities. By solving the one-year global positioning system (GPS) data of Shandong Continuous Operational Reference System (SDCORS) in 2012, we modeled the single-layer spherical harmonic model of vertical total electron content (TEC) over Shandong Province, China, and analyzed the time series of TEC in 2012. The ionosphere over Shandong in 2012 was in the peak year of solar activity. The ionospheric model over Shandong was calibrated and verified using data of the Center for Orbit Determination in Europe (CODE) and the Crustal Movement Observation Network of China (CMONOC), respectively. The ionosphere is greatly influenced by latitude and solar activity and has the phenomenon of Winter anomaly and semiannual anomaly as well as the session change, diurnal variation, monthly change and seasonal variations. So we can grasp the regularity of temporal and spatial distribution of ionosphere over Shandong, China.