期刊文献+

Intermittent Geocast Routing in Urban Vehicular Delay Tolerant Networks

Intermittent Geocast Routing in Urban Vehicular Delay Tolerant Networks
原文传递
导出
摘要 Nowadays, both vehicular active safety service and user infotainment service have become two core applications for urban Vehicular Delay Tolerant Networks(u VDTNs). Both core applications require a high data transmission capacity over u VDTNs. In addition, the connection between any two vehicles in u VDTNs is intermittent and opportunistic. Intermittent data dissemination over u VDTNs is a stringent and challenging issue. In this paper,we propose Intermittent Geocast Routing(IGR). For the first step, IGR has to estimate the active connection time interval via the moving directions and velocities between any two vehicles. Second, the throughput function for u VDTNs is fitted by building a wavelet neural network traffic model. Third, the throughput function within the effective connection time interval is integrated to obtain the forwarding capability estimation of the node. Fourth, a high-efficiency geocast routing algorithm using the node forwarding capability for u VDTNs is designed. Finally, IGR is simulated on the opportunistic Network Environment simulator. Experimental results show that IGR can greatly improve the packet delivery ratio, transmission delay, delay jitter, and packet loss rate compared with the state of the art. Nowadays, both vehicular active safety service and user infotainment service have become two core applications for urban Vehicular Delay Tolerant Networks(u VDTNs). Both core applications require a high data transmission capacity over u VDTNs. In addition, the connection between any two vehicles in u VDTNs is intermittent and opportunistic. Intermittent data dissemination over u VDTNs is a stringent and challenging issue. In this paper,we propose Intermittent Geocast Routing(IGR). For the first step, IGR has to estimate the active connection time interval via the moving directions and velocities between any two vehicles. Second, the throughput function for u VDTNs is fitted by building a wavelet neural network traffic model. Third, the throughput function within the effective connection time interval is integrated to obtain the forwarding capability estimation of the node. Fourth, a high-efficiency geocast routing algorithm using the node forwarding capability for u VDTNs is designed. Finally, IGR is simulated on the opportunistic Network Environment simulator. Experimental results show that IGR can greatly improve the packet delivery ratio, transmission delay, delay jitter, and packet loss rate compared with the state of the art.
出处 《Tsinghua Science and Technology》 SCIE EI CAS CSCD 2016年第6期630-642,共13页 清华大学学报(自然科学版(英文版)
基金 partially supported by the National Natural Science Foundation of China(Nos.61202474,61272074,61373017,and 61572260) the Project Funded by China Postdoctoral Science Foundation(No.2015M570469) the Natural Science Foundation of Jiangsu Province(No.BK20130528) the Key Research and Development Program(Social Development)Foundation of Zhenjiang(No.SH2015020) the Senior Professional Scientific Research Foundation of Jiangsu University(No.12JDG049)
关键词 urban vehicular delay tolerant networks geocast routing node forwarding capability connection time urban vehicular delay tolerant networks geocast routing node forwarding capability connection time
  • 相关文献

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部