Abstract
Research on flourishing public bike-sharing systems has been widely discussed in recent years. In these studies, many existing works focus on accurately predicting individual stations in a short time. This work, therefore, aims to predict long-term bike rental/drop-off demands at given bike station locations in the expansion areas. The real-world bike stations are mainly built-in batches for expansion areas. To address the problem, we propose LDA (Long-Term Demand Advisor), a framework to estimate the long-term characteristics of newly established stations. In LDA, several engineering strategies are proposed to extract discriminative and representative features for long-term demands. Moreover, for original and newly established stations, we propose several feature extraction methods and an algorithm to model the correlations between urban dynamics and long-term demands. Our work is the first to address the long-term demand of new stations, providing the government with a tool to pre-evaluate the bike flow of new stations before deployment; this can avoid wasting resources such as personnel expense or budget. We evaluate real-world data from New York City’s bike-sharing system, and show that our LDA framework outperforms baseline approaches.
Author supplied keywords
Cite
CITATION STYLE
Hsieh, H. P., Lin, F., Jiang, J., Kuo, T. Y., & Chang, Y. E. (2021). Inferring long-term demand of newly established stations for expansion areas in bike sharing system. Applied Sciences (Switzerland), 11(15). https://doi.org/10.3390/app11156748
Register to see more suggestions
Mendeley helps you to discover research relevant for your work.