Title :
A solution for reallocating public bike among bike stations
Author :
Li, Jinfeng ; Ren, Changrui ; Shao, Bing ; Wang, Qinhua ; He, Miao ; Dong, Jin ; Chu, Feng
Author_Institution :
Supply Chain Manage. & Logistics Res., IBM Res. - China, Beijing, China
Abstract :
Public bike system for proximity travel is widely used in urban cities all over the world. Main reasons for launching public bike program is to reduce carbon footprint so as to prevent greenhouse effect and to solve Last-Mile problem in order to make convenient for citizens. However, we may encounter awkward cases in peak hours (from 7:00 to 9:00 and 17:00 to 19:00) that no bike is available at some stations or no vacant place is left to put bikes. The actual solution in most cities is in a traditional way based on call centers. A personnel taking charge of bikes in a certain zone reallocates bikes among bike stations based on notification of bike users by telephone call when bike stations are full or empty. This inefficient solution will reduce bike utilization and even annoy bike users. In this paper, we propose a system & methodology to intelligently guide personnel to reallocate bikes among stations, aiming at overcoming the above awkward cases and maximizing bike utilization.
Keywords :
air pollution; bicycles; call centres; traffic engineering computing; bike stations; bike utilization maximization; call centers; carbon footprint reduction; greenhouse effect prevention; last-mile problem; proximity travel; public bike reallocation; telephone call; urban cities; Cities and towns; Optimization; Personnel; Planning; Routing; Vehicles;
Conference_Titel :
Networking, Sensing and Control (ICNSC), 2012 9th IEEE International Conference on
Conference_Location :
Beijing
Print_ISBN :
978-1-4673-0388-0
DOI :
10.1109/ICNSC.2012.6204943