Topology-adapting routing strategy for global navigation satellite system

In order to implement global precision navigation, the global navigation satellite system must rely on information exchange with the ground station to achieve system time synchronization and inter-satellite ranging. For the limitations of ground stations located in territory and actual communication...

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Main Authors: Yue Zhao, Xianqing Yi, Zhenwei Hou
Format: Article
Language:English
Published: Wiley 2017-10-01
Series:International Journal of Distributed Sensor Networks
Online Access:https://doi.org/10.1177/1550147717734996
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author Yue Zhao
Xianqing Yi
Zhenwei Hou
author_facet Yue Zhao
Xianqing Yi
Zhenwei Hou
author_sort Yue Zhao
collection DOAJ
description In order to implement global precision navigation, the global navigation satellite system must rely on information exchange with the ground station to achieve system time synchronization and inter-satellite ranging. For the limitations of ground stations located in territory and actual communication requirements, it is essential to study the routing problem of navigation satellite network, which indicates that traditional routing technology cannot meet the requirements of global navigation satellite system. Aiming to control the dynamic topology of global navigation satellite system and satisfy communication constraints, we investigate the topology-adapting strategy for inter-satellite link constructing and routing. First, we propose the design method of the inter-satellite link scheme based on fixed topology to satisfy the requirements for delay and relay hops. Then, we build the constraint programming model of the global navigation satellite system routing problem. In further, we design the routing calculation framework and optimization strategies to enhance the routing performance of the transmission scheme. Through the simulation and numerical results, we demonstrate that the fixed topology scheme can meet the navigation requirements, and the proposed strategy can effectively improve the routing performance.
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institution Kabale University
issn 1550-1477
language English
publishDate 2017-10-01
publisher Wiley
record_format Article
series International Journal of Distributed Sensor Networks
spelling doaj-art-dd4c60a73e7b45ed8ae0b9cf1673c7f42025-08-20T03:25:04ZengWileyInternational Journal of Distributed Sensor Networks1550-14772017-10-011310.1177/1550147717734996Topology-adapting routing strategy for global navigation satellite systemYue ZhaoXianqing YiZhenwei HouIn order to implement global precision navigation, the global navigation satellite system must rely on information exchange with the ground station to achieve system time synchronization and inter-satellite ranging. For the limitations of ground stations located in territory and actual communication requirements, it is essential to study the routing problem of navigation satellite network, which indicates that traditional routing technology cannot meet the requirements of global navigation satellite system. Aiming to control the dynamic topology of global navigation satellite system and satisfy communication constraints, we investigate the topology-adapting strategy for inter-satellite link constructing and routing. First, we propose the design method of the inter-satellite link scheme based on fixed topology to satisfy the requirements for delay and relay hops. Then, we build the constraint programming model of the global navigation satellite system routing problem. In further, we design the routing calculation framework and optimization strategies to enhance the routing performance of the transmission scheme. Through the simulation and numerical results, we demonstrate that the fixed topology scheme can meet the navigation requirements, and the proposed strategy can effectively improve the routing performance.https://doi.org/10.1177/1550147717734996
spellingShingle Yue Zhao
Xianqing Yi
Zhenwei Hou
Topology-adapting routing strategy for global navigation satellite system
International Journal of Distributed Sensor Networks
title Topology-adapting routing strategy for global navigation satellite system
title_full Topology-adapting routing strategy for global navigation satellite system
title_fullStr Topology-adapting routing strategy for global navigation satellite system
title_full_unstemmed Topology-adapting routing strategy for global navigation satellite system
title_short Topology-adapting routing strategy for global navigation satellite system
title_sort topology adapting routing strategy for global navigation satellite system
url https://doi.org/10.1177/1550147717734996
work_keys_str_mv AT yuezhao topologyadaptingroutingstrategyforglobalnavigationsatellitesystem
AT xianqingyi topologyadaptingroutingstrategyforglobalnavigationsatellitesystem
AT zhenweihou topologyadaptingroutingstrategyforglobalnavigationsatellitesystem