DocumentCode :
3577303
Title :
Fast Routing in Location-Based Social Networks Leveraging Check-in Data
Author :
Yulong Gu ; Weidong Liu ; Yuan Yao ; JiaXing Song
Author_Institution :
Dept. of Comput. Sci. & Technol., Tsinghua Univ., Beijing, China
fYear :
2014
Firstpage :
428
Lastpage :
435
Abstract :
With the extensive use of sensor-embedded smart phones, Location-Based Social Networks (LBSN) become more and more popular among online social networks in recent years. In social networks, constructing the shortest path with minimum cost between any two nodes efficiently is vital for both graph analysis and implementation of applications. This is well known as the routing problem in social networks. However, existing approaches of routing in social networks all fail in the scenario of LBSN which are large and dynamic. In this paper, we work out a fast routing system in LBSN leveraging check-in data to tackle this challenging problem. To be specific, firstly, we demonstrate the existence of the small world phenomenon in LBSN. Secondly, we reveal the friendship-inverse-geography property in LBSN. Thirdly, we design a Location-Based Fast Routing System LBFRS which can accomplish fast routing in LBSN leveraging geographical knowledge predicted from check-in data. Experiments on two real Location-Based Social Networks Go Walla and Bright kite have shown that LBFRS performs much more accurate prediction in geography than the baseline method and accomplishes dozens of times faster routing than Dijkstra in average.
Keywords :
graph theory; mobile computing; smart phones; social networking (online); Go Walla and Bright kite; LBFRS; LBSN; friendship-inverse-geography property; graph analysis; location-based fast routing system; location-based social networks; online social networks; routing problem; sensor-embedded smart phones; shortest path; Algorithm design and analysis; Analytical models; Clustering algorithms; Heuristic algorithms; Prediction algorithms; Routing; Social network services; Location-Based Social Networks; location prediction; routing algorithm; shortest path; small world phenomenon;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Internet of Things (iThings), 2014 IEEE International Conference on, and Green Computing and Communications (GreenCom), IEEE and Cyber, Physical and Social Computing(CPSCom), IEEE
Print_ISBN :
978-1-4799-5967-9
Type :
conf
DOI :
10.1109/iThings.2014.77
Filename :
7059702
Link To Document :
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