Unraveling Spatial Dynamics of Urban Complexity Between Land Use Patterns and Travel Behavior Using Structural Equation Modeling

IF 1.7 4区 工程技术 Q2 MATHEMATICS, INTERDISCIPLINARY APPLICATIONS Complexity Pub Date : 2024-12-17 DOI:10.1155/cplx/4458996
Abdulla Al Kafy, Md. Abdul Fattah, Mahir Shahrier, Hamad Ahmed Altuwaijri
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Abstract

Rapid urbanization and inadequate transportation infrastructure in developing countries have led to complex, unsustainable travel patterns and adverse environmental impacts. This study employs structural equation modeling (SEM) to explore the interplay between land use patterns and travel behavior in Rajshahi, Bangladesh. Analyzing data from 1298 respondents, we uncovered intricate relationships between sociodemographic, economic, and spatial factors. The SEM revealed that economic characteristics had the highest total effect (0.674) on travel behavior, followed by land use (0.521). Notably, accessibility negatively correlated with economic (−0.70) and sociodemographic factors (−0.91). The residential environment emerged as the most significant land use indicator, with a weight of 1.820. Our analysis found that 31% of trips used easy bikes, while 23% were on foot. The employment rate positively impacted economic characteristics (1.270), despite the considerable weight of total household income (0.874). Key findings indicate that economic characteristics and land use patterns are the primary drivers of travel behavior, highlighting the need for integrated urban planning. This study provides a nuanced understanding of urban complexity, offering valuable insights for sustainable transportation planning in developing cities. By elucidating the nonlinear interactions between various urban elements, our research contributes to the growing field of complex systems analysis in urban transportation contexts.

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来源期刊
Complexity
Complexity 综合性期刊-数学跨学科应用
CiteScore
5.80
自引率
4.30%
发文量
595
审稿时长
>12 weeks
期刊介绍: Complexity is a cross-disciplinary journal focusing on the rapidly expanding science of complex adaptive systems. The purpose of the journal is to advance the science of complexity. Articles may deal with such methodological themes as chaos, genetic algorithms, cellular automata, neural networks, and evolutionary game theory. Papers treating applications in any area of natural science or human endeavor are welcome, and especially encouraged are papers integrating conceptual themes and applications that cross traditional disciplinary boundaries. Complexity is not meant to serve as a forum for speculation and vague analogies between words like “chaos,” “self-organization,” and “emergence” that are often used in completely different ways in science and in daily life.
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