PPP models and performances from single- to quad-frequency BDS observations

Abstract Nowadays, China BeiDou Navigation Satellite System (BDS) has been developed well and provided global services with highly precise positioning, navigation and timing (PNT) as well as unique short-message communication, particularly global system (BDS-3) with higher precision multi-frequency...

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Main Authors: Shuanggen Jin, Ke Su
Format: Article
Language:English
Published: SpringerOpen 2020-04-01
Series:Satellite Navigation
Subjects:
BDS
PPP
IFB
ZTD
DCB
Online Access:https://doi.org/10.1186/s43020-020-00014-y
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spelling doaj-76efe6a3b3854f03aadc033261a86a2e2021-05-02T11:23:43ZengSpringerOpenSatellite Navigation2662-13632020-04-011111310.1186/s43020-020-00014-yPPP models and performances from single- to quad-frequency BDS observationsShuanggen Jin0Ke Su1Shanghai Astronomical Observatory, Chinese Academy of SciencesShanghai Astronomical Observatory, Chinese Academy of SciencesAbstract Nowadays, China BeiDou Navigation Satellite System (BDS) has been developed well and provided global services with highly precise positioning, navigation and timing (PNT) as well as unique short-message communication, particularly global system (BDS-3) with higher precision multi-frequency signals. The precise point positioning (PPP) can provide the precise position, receiver clock, and zenith tropospheric delay (ZTD) with a stand-alone receiver compared to the traditional double differenced relative positioning mode, which has been widely used in PNT, geodesy, meteorology and so on. However, it has a lot of challenges for multi-frequency BDS PPP with different strategies and more unknown parameters. In this paper, the detailed PPP models using the single-, dual-, triple-, and quad-frequency BDS observations are presented and evaluated. Firstly, BDS system and PPP method are introduced. Secondly, the stochastic models of time delay bias in BDS-2/BDS-3 PPP including the neglection, random constant, random walk and white noise are presented. Then, three single-frequency, four dual-frequency, four triple-frequency and four quad-frequency BDS PPP models are provided. Finally, the BDS PPP models progress and performances including theoretical comparison of the models, positioning performances, precise time and frequency transfer, ZTD, inter-frequency bias (IFB) and differential code bias (DCB) are presented and evaluated as well as future challenges. The results show that the multi-frequency BDS observations will greatly improve the PPP performances.https://doi.org/10.1186/s43020-020-00014-yBDSGNSSPPPIFBZTDDCB
collection DOAJ
language English
format Article
sources DOAJ
author Shuanggen Jin
Ke Su
spellingShingle Shuanggen Jin
Ke Su
PPP models and performances from single- to quad-frequency BDS observations
Satellite Navigation
BDS
GNSS
PPP
IFB
ZTD
DCB
author_facet Shuanggen Jin
Ke Su
author_sort Shuanggen Jin
title PPP models and performances from single- to quad-frequency BDS observations
title_short PPP models and performances from single- to quad-frequency BDS observations
title_full PPP models and performances from single- to quad-frequency BDS observations
title_fullStr PPP models and performances from single- to quad-frequency BDS observations
title_full_unstemmed PPP models and performances from single- to quad-frequency BDS observations
title_sort ppp models and performances from single- to quad-frequency bds observations
publisher SpringerOpen
series Satellite Navigation
issn 2662-1363
publishDate 2020-04-01
description Abstract Nowadays, China BeiDou Navigation Satellite System (BDS) has been developed well and provided global services with highly precise positioning, navigation and timing (PNT) as well as unique short-message communication, particularly global system (BDS-3) with higher precision multi-frequency signals. The precise point positioning (PPP) can provide the precise position, receiver clock, and zenith tropospheric delay (ZTD) with a stand-alone receiver compared to the traditional double differenced relative positioning mode, which has been widely used in PNT, geodesy, meteorology and so on. However, it has a lot of challenges for multi-frequency BDS PPP with different strategies and more unknown parameters. In this paper, the detailed PPP models using the single-, dual-, triple-, and quad-frequency BDS observations are presented and evaluated. Firstly, BDS system and PPP method are introduced. Secondly, the stochastic models of time delay bias in BDS-2/BDS-3 PPP including the neglection, random constant, random walk and white noise are presented. Then, three single-frequency, four dual-frequency, four triple-frequency and four quad-frequency BDS PPP models are provided. Finally, the BDS PPP models progress and performances including theoretical comparison of the models, positioning performances, precise time and frequency transfer, ZTD, inter-frequency bias (IFB) and differential code bias (DCB) are presented and evaluated as well as future challenges. The results show that the multi-frequency BDS observations will greatly improve the PPP performances.
topic BDS
GNSS
PPP
IFB
ZTD
DCB
url https://doi.org/10.1186/s43020-020-00014-y
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