A Fast Parallel Processing Strategy of Double Difference Model for GNSS Huge Networks

In view of the existing problem of poor timeliness for larger GNSS network data processed by the double-difference (DD) model, a new approach for the independent DD observations selection and integrated processing of huge GNSS networks is presented by using the parallel algorithm design and parallel...

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Main Authors: CUI Yang, LÜ Zhiping, LI Linyang, CHEN Zhengsheng, SUN Dashuang, KUANG Yingcai
Format: Article
Language:zho
Published: Surveying and Mapping Press 2017-07-01
Series:Acta Geodaetica et Cartographica Sinica
Subjects:
Online Access:http://html.rhhz.net/CHXB/html/2017-7-848.htm
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spelling doaj-5fc2ee164b99444299f3c475aa7f66ab2020-11-24T23:11:27ZzhoSurveying and Mapping PressActa Geodaetica et Cartographica Sinica1001-15951001-15952017-07-0146784885610.11947/j.AGCS.2017.2016058520170720160585A Fast Parallel Processing Strategy of Double Difference Model for GNSS Huge NetworksCUI Yang0LÜ Zhiping1LI Linyang2CHEN Zhengsheng3SUN Dashuang4KUANG Yingcai5Logistical Engineering University, Chongqing 401331, ChinaInformation Engineering University, Zhengzhou 450052, ChinaInformation Engineering University, Zhengzhou 450052, ChinaXi'an High-Tech Institute, Xi'an 710025, ChinaInformation Engineering University, Zhengzhou 450052, ChinaInformation Engineering University, Zhengzhou 450052, ChinaIn view of the existing problem of poor timeliness for larger GNSS network data processed by the double-difference (DD) model, a new approach for the independent DD observations selection and integrated processing of huge GNSS networks is presented by using the parallel algorithm design and parallel programming technology in this paper. The new approach is implemented by using the parallel computing strategy of multi-core parallel level and network parallel level. Validation experiment with GPS observation data collected from about 375 IGS stations was carried out, which demonstrated that the new approach has an average about 530,000 more independent DD ambiguities than the traditional method. The average ENU(East North Vertical) positioning precision of the new approach was improved by 14.0%、12.9% and 29.2%. In the whole network processing of 375 stations, the efficiency of parallel solution with four quad-core nodes is increased about 14 times than the traditional serial computing scheme, significantly improves the efficiency of the entire network processing with DD model.http://html.rhhz.net/CHXB/html/2017-7-848.htmlarge GNSS networkdouble difference modelindependent baselinemulti-core multi-nodeparallel computing
collection DOAJ
language zho
format Article
sources DOAJ
author CUI Yang
LÜ Zhiping
LI Linyang
CHEN Zhengsheng
SUN Dashuang
KUANG Yingcai
spellingShingle CUI Yang
LÜ Zhiping
LI Linyang
CHEN Zhengsheng
SUN Dashuang
KUANG Yingcai
A Fast Parallel Processing Strategy of Double Difference Model for GNSS Huge Networks
Acta Geodaetica et Cartographica Sinica
large GNSS network
double difference model
independent baseline
multi-core multi-node
parallel computing
author_facet CUI Yang
LÜ Zhiping
LI Linyang
CHEN Zhengsheng
SUN Dashuang
KUANG Yingcai
author_sort CUI Yang
title A Fast Parallel Processing Strategy of Double Difference Model for GNSS Huge Networks
title_short A Fast Parallel Processing Strategy of Double Difference Model for GNSS Huge Networks
title_full A Fast Parallel Processing Strategy of Double Difference Model for GNSS Huge Networks
title_fullStr A Fast Parallel Processing Strategy of Double Difference Model for GNSS Huge Networks
title_full_unstemmed A Fast Parallel Processing Strategy of Double Difference Model for GNSS Huge Networks
title_sort fast parallel processing strategy of double difference model for gnss huge networks
publisher Surveying and Mapping Press
series Acta Geodaetica et Cartographica Sinica
issn 1001-1595
1001-1595
publishDate 2017-07-01
description In view of the existing problem of poor timeliness for larger GNSS network data processed by the double-difference (DD) model, a new approach for the independent DD observations selection and integrated processing of huge GNSS networks is presented by using the parallel algorithm design and parallel programming technology in this paper. The new approach is implemented by using the parallel computing strategy of multi-core parallel level and network parallel level. Validation experiment with GPS observation data collected from about 375 IGS stations was carried out, which demonstrated that the new approach has an average about 530,000 more independent DD ambiguities than the traditional method. The average ENU(East North Vertical) positioning precision of the new approach was improved by 14.0%、12.9% and 29.2%. In the whole network processing of 375 stations, the efficiency of parallel solution with four quad-core nodes is increased about 14 times than the traditional serial computing scheme, significantly improves the efficiency of the entire network processing with DD model.
topic large GNSS network
double difference model
independent baseline
multi-core multi-node
parallel computing
url http://html.rhhz.net/CHXB/html/2017-7-848.htm
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