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GPSInSAR
- InSAR是一种极具潜力的新型空间大地测量方法,但它也有其固有的限制,特别是受到大气层延迟(对流层延迟、电离层延迟等)、卫星轨道误差、地表状况和时变去相关性等影响,很容易导致InSAR图像解释错误,而InSAR数据本身无法解决所存在的上述问题。而GPS可以精密定位,可以较为精确地确定电离层、对流层参数,是当前应用最广泛的一种空间大地测量手段。-InSAR is a potential new space geodetic methods, but it also has its inherent
ionosphere
- How to use CODE’s Global Ionosphere Maps fortran语言,有说明书,有源码,有例子-How to use CODE s Global Ionosphere Mapsfortran language, there are brochures, there are source code, there are examples of
elf_bg
- 考虑电离层影响下水平点偶极源在均匀地下产生的电场值-Consider the value of the electric field generated by the horizontal point dipole source in uniform underground under the influence of the ionosphere
iri-model
- IRI模型计算电离层延迟的matlab 算法-Computes the International Reference Ionosphere (IRI), which is an internationally recognized model for various ionospheric properties
Read_Ionex
- 本程序可以读取电离层IONEX数据,可以运行,程序流畅简洁,清楚易懂-The program can read the ionosphere IONEX data, you can run the program smoothly simple, clear and understandable!!
CGps
- GPS 单点定位,高度角随机模型加权,电离层K8模型改正。-GPS single point positioning, elevation weighted random model, ionosphere corrections K8 model.
IRIModel2007
- IRIModel2007,电离层计算模型-IRIModel2007,A model for calculating the ionosphere
M_DCB
- 利用GPS观测和精密星历,采用多项式或球谐函数模型的方法进行建模,能够同时估计接收和卫星DCB,在此基础山计算电离层TEC,为导航单位提供电离层延迟改正-Using GPS observation and precise ephemeris, or methods using spherical harmonic polynomial function model to model, simultaneously estimates the reception and satellite DCB
dq
- 读取CORS数据,重采样成30秒,计算电离层总电子含量-Read CORS data, resampling into 30 seconds, calculate the total electron content of the ionosphere
计算tec(tokyo)
- Estimate tec (total electron content) by least-sqaure adjustment using GPS dual-frequency code observables. Ionosphere is approximated as the single- layer model at the height of 350km with local or global tec model. Satellite/receiver dcbs (diffe
iri
- 用于在matlab上计算电离层的电磁场参数(The parameters of the electromagnetic field used to calculate the ionosphere)
dlcwc
- 电离层误差模块,主要依据参数进行误差计算(Ionosphere error module)