Download China Satellite Navigation Conference (CSNC) 2016 by Jiadong Sun, Jingnan Liu, Shiwei Fan, Feixue Wang PDF

By Jiadong Sun, Jingnan Liu, Shiwei Fan, Feixue Wang

These court cases current chosen study papers from CSNC2016, held in the course of 18th-20th might in Changsha, China. The topic of CSNC2016 makes sense Sensing, shrewdpermanent conception. those papers talk about the applied sciences and purposes of the worldwide Navigation satellite tv for pc procedure (GNSS), and the most recent development made within the China BeiDou procedure (BDS) specifically. they're divided into 12 subject matters to compare the corresponding periods in CSNC2016, which extensively lined key themes in GNSS. Readers can find out about the BDS and hold abreast of the most recent advances in GNSS concepts and functions.

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Extra resources for China Satellite Navigation Conference (CSNC) 2016 Proceedings: Volume I

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J Geod 88(7):691–703 20. Yuan Y, Zhang K, Rohm W, Choy S, Norman R, Wang CS (2014) Real-time retrieval of precipitable water vapor from GPS precise point positioning. J Geophys Res Atmos 119 (16):10044–10057 21. Niell AE (2001) Preliminary evaluation of atmospheric mapping functions based on numerical weather models. Phys Chem Earth Part A 26(6):475–480 22. Tregoning P, Herring TA (2006) Impact of a priori zenith hydrostatic delay errors on GPS estimates of station heights and zenith total delays.

The receiver has 31 dbf channels, so it can complete the synthesis a plurality of different direction’s signal at the same time. In order to effectively improve the detection area, the receiver can achieve the angle scanning between the fixed angle and the dynamic angle. 2 km) dynamic scenes, after that we got the delay-doppler mapping through to deal with the reflected signals. By calculating the phase difference between the reflection channel’s DDM and direct access, we got the high information of the receiver, after that we compared the high information that can be got through the receiver, the answer showed that the deviation is less than 4 m.

9759 ns. 053 ns. Therefore, the receiver biases curve of MCM4 has a greater change. The receiver biases of OHI3 station do not get on the days of 360–363 of 2006, the reason is, the data of IHO3 station are removed when the observation data is preprocessing. For the same reason, the receiver biases curve of FALE station is not plotted in Fig. 9. 5 Conclusion Using a thin layer assumption of the ionosphere and dual-frequency GPS observations from 16 geomagnetically quiet days in four seasons of 2006, this paper adopts the spherical harmonic model to fit TEC and investigates the effects of two network constitutions on global TEC derivation, one with 275 GPS receivers and the other with 125 GPS receivers.

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