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March 27, 2026Land3 citationsOpen Access

Enhancing Urban and Peri-Urban Zoning Using Spatially Constrained Clustering: Evidence from the Jakarta–Bandung Mega-Urban Region

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NRNur Zahro Charissa RahmaERErnan RustiadiAPAndrea Emma Pravitasari

Key Points

  • The aim is to delineate urban, peri-urban, and rural spatial structures using a spatially constrained clustering framework.
  • Utilized spatially constrained clustering framework for zoning
  • Analyzed built-environment, accessibility, environmental, and socio-economic indicators
  • Employed grid-based K-Means clustering
  • Compared Rustiadi Quantitative Zoning Method-2 with conventional non-spatial clustering
  • Conducted validation using stability analysis and statistical differentiation tests
  • RQZM-2 provided more stable and coherent clusters compared to conventional methods
  • Identified four-cluster solution including urban cores, peri-urban transition belts, and distinct rural types
  • Revealed a functionally differentiated regional structure in the Jakarta–Bandung Mega-Urban Region

Abstract

Rapid urbanization in the Global South has intensified the formation of mega-urban regions, where conventional urban–rural classifications often fail to capture the complexity of peri-urban systems. In the Jakarta–Bandung Mega-Urban Region (JBMUR), rapid land-use change and socio-economic transformation have produced hybrid landscapes that challenge binary zoning approaches. This study aims to delineate urban, peri-urban, and rural spatial structures using a spatially constrained clustering framework and to evaluate the performance of the Rustiadi Quantitative Zoning Method-2 (RQZM-2) compared with conventional non-spatial clustering (Non-RQZM). Built-environment, accessibility, environmental, and socio-economic indicators derived from remote sensing and spatially disaggregated statistical data were analyzed using grid-based K-Means clustering. Comparative validation using internal metrics, stability analysis, spatial coherence diagnostics, and statistical differentiation tests indicates that RQZM-2 produces more stable, spatially coherent, and interpretable clusters than conventional clustering. The validated four-cluster solution identifies compact urban cores, extensive peri-urban transition belts, and two distinct rural sub-types, revealing a functionally differentiated regional structure across the JBMUR. These findings demonstrate that incorporating spatial contextualization into clustering improves the empirical representation of peri-urban spatial continuity and provides a robust analytical basis for spatial zoning and regional planning in rapidly urbanizing mega-urban regions.

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Cite This Study

Rahma et al. (2026) studied this question.

synapsesocial.com/papers/69c61f8515a0a509bde17f8dhttps://doi.org/10.3390/land15040534
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