Revealing the multiscale impact of external factors on dockless bike sharing and metro integration: Evidence from Shenzhen

IF 3.1 3区 工程技术 Q2 ENVIRONMENTAL STUDIES
Junze Ma , Changjiang Zheng , Shukang Zheng , Fei Wu , Lixin Zhang , Zhilong Wu
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Abstract

Dockless bike sharing (DBS) and metro integration offer innovative solutions for the first-mile and last-mile challenges of urban transportation. However, accurately identifying transfer passenger volume, analyzing DBS and metro integration characteristics, and understanding the spatial heterogeneity of factors affecting this volume remain areas to explore. This study, using Shenzhen as a case, constructs a framework to identify transfer passenger volume by considering built environment elements around metro stations and applying a Thiessen polygon. Transfer passenger volumes are classified into six categories, and their spatio-temporal characteristics are analyzed. A multiscale geographically weighted regression (MGWR) model investigates the impacts of socio-economic attributes, built environment, and transportation-related factors on transfer passenger volume, revealing spatial heterogeneity. Results show that the demand for DBS and metro integration is higher in the morning peak than in the evening peak, with access transfer passenger volume peaks occurring earlier than egress peaks. Spatially, transfer passenger volume shows heterogeneity, with higher demand in the urban core than in the suburbs. Commercial and residential and enterprises have the most significant impact on various types of transfer passenger volume, showing the highest spatial heterogeneity in enterprises. In contrast, science education and culture positively influence evening peak access transfer volume and exhibit the weakest spatial heterogeneity. Population density, sports and leisure, shopping and entertainment, and tourist attractions display localized positive or negative impacts. These findings can guide operators and planners in optimizing public transportation resources to enhance DBS and metro integration.
揭示外部因素对无桩共享单车与地铁融合的多尺度影响:来自深圳的证据
无桩共享单车(DBS)和地铁一体化为城市交通的第一英里和最后一英里挑战提供了创新的解决方案。然而,准确识别换乘客运量、分析星展系统和地铁一体化特征,以及了解影响换乘客运量的因素的空间异质性仍有待探索。本研究以深圳为例,通过考虑地铁站周围的建成环境因素,运用泰森多边形构建了一个识别换乘客运量的框架。将交通客运量划分为6类,并分析其时空特征。利用多尺度地理加权回归(MGWR)模型分析了社会经济属性、建成环境和交通相关因素对换乘客运量的影响,揭示了空间异质性。结果表明:早高峰对DBS和地铁一体化的需求高于晚高峰,且入口换乘客流量高峰出现早于出口高峰;空间上,换乘客运量呈现异质性,核心城区需求高于郊区。商业、住宅和企业对各类中转客运量的影响最为显著,企业的空间异质性最高。科学教育和文化正向影响晚峰通道转移量,空间异质性最弱。人口密度、运动休闲、购物娱乐、旅游景点均呈现局部性的正面或负面影响。这些发现可以指导运营商和规划者优化公共交通资源,提高星展系统与地铁的融合。
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来源期刊
CiteScore
8.90
自引率
2.60%
发文量
56
期刊介绍: The International Journal of Sustainable Transportation provides a discussion forum for the exchange of new and innovative ideas on sustainable transportation research in the context of environmental, economical, social, and engineering aspects, as well as current and future interactions of transportation systems and other urban subsystems. The scope includes the examination of overall sustainability of any transportation system, including its infrastructure, vehicle, operation, and maintenance; the integration of social science disciplines, engineering, and information technology with transportation; the understanding of the comparative aspects of different transportation systems from a global perspective; qualitative and quantitative transportation studies; and case studies, surveys, and expository papers in an international or local context. Equal emphasis is placed on the problems of sustainable transportation that are associated with passenger and freight transportation modes in both industrialized and non-industrialized areas. All submitted manuscripts are subject to initial evaluation by the Editors and, if found suitable for further consideration, to peer review by independent, anonymous expert reviewers. All peer review is single-blind. Submissions are made online via ScholarOne Manuscripts.
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