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March 28, 2026Sustainability2 citationsOpen Access

Smart Parking Systems as Data-Oriented Architectural Spaces: A Conceptual Framework for Sustainable Urban Mobility

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HUHayri UlviSSSemra Arslan SelçukGSGülsel SATOĞLU

Key Points

  • This research aims to evaluate how smart parking systems can improve urban mobility and energy efficiency.
  • Conducted a comprehensive literature review
  • Performed a comparative analysis of five international case studies
  • Developed a conceptual synthesis of findings
  • Smart parking systems enhance vehicle storage and act as digital-spatial interfaces
  • They optimize circulation patterns and reduce search-related emissions
  • Increased spatial efficiency supports sustainable urban mobility networks

Abstract

The increasing number of vehicles in cities reduces the efficiency of parking infrastructure and increases traffic congestion, making it challenging to achieve sustainable transportation goals. This situation necessitates a re-evaluation of urban mobility systems in conjunction with spatial organization and digital technologies. This article examines smart parking systems as “data-oriented spaces”, analyzing their impact on urban mobility, energy efficiency and spatial organization from a multidimensional perspective. The research adopts a qualitative, multi-level approach, structured through a comprehensive literature review, a comparative analysis of five international case studies and a conceptual synthesis of the findings. The data obtained were evaluated using criteria such as technological infrastructure, spatial structure, sustainability performance and user interaction. The findings reveal that smart parking systems not only serve as vehicle storage but can also function as digital–spatial interfaces that direct urban data flows. This study presents a conceptual framework that treats smart parking systems as data-oriented architectural spaces, offering a holistic approach to the design of sustainable urban mobility infrastructures. This perspective allows for redesigning parking structures as adaptable, data-oriented architectural systems that optimize circulation patterns, reduce search-related emissions, increase spatial efficiency and support sustainable urban mobility networks.

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Cite This Study

Ulvi et al. (2026) studied this question.

synapsesocial.com/papers/69c771dd8bbfbc51511e2002https://doi.org/10.3390/su18073229
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