Projected Land Use Change Based on Protected Scenarios in Malang City

Authors

  • Andri Kurniawan Department of Development Geography, Faculty of Geography, Universitas Gadjah Mada, Indonesia https://orcid.org/0000-0002-2647-7427
  • Hanif Ananta Damar Muzaqqi Department of Development Geography, Faculty of Geography, Gadjah Mada University, Indonesia

DOI:

https://doi.org/10.24114/jg.v18i1.67788

Keywords:

Projection, Land Use, Protected Scenario, Malang City

Abstract

Regional spatial planning often requires studies of projected land-use changes. However, these land-use change projection studies often neglect the protection function aspect in their modeling scenarios. Modeling using protection function scenarios is expected to make a significant theoretical and practical contribution to regional spatial planning and geospatial analysis. The research aims to develop a model for projecting land use change based on protected scenarios to support sustainable development in Malang City. Projection of land-use change based on scenarios is carried out quantitatively and involves spatial modeling. Spatial modeling was carried out using Cellular Automata (CA), which is integrated with Markov Chain (MC) and Artificial Neural Network (ANN). Hybrid modeling of Cellular Automata (CA) – Markov Chain (MC) – Artificial Neural Network (ANN) is expected to offer more attractive advantages compared to single modeling techniques. The model was developed by paying attention to the driving factors and constraint variables as scenario variables in the form of maintained protected areas. This research produced a projected model of land use change in 2029 based on a protected scenario in Malang City. The projection results indicate potential land change for sizable settlements in Malang City, especially in the eastern and western parts around the center of activities and the Malang-Pandaan toll road. The potential development of these settlements needs to be anticipated and directed so that they do not cause various spatial conflicts in the future and do not trigger environmental degradation. With scenario-based projections, several protected areas such as city parks, green belts, city forests, and river banks can be relatively maintained in 2029 according to the spatial pattern plan in the Malang City spatial plan.

Author Biography

Andri Kurniawan, Department of Development Geography, Faculty of Geography, Universitas Gadjah Mada, Indonesia

Departeman Geografi Pembangunan

References

Abass, K., Adanu, S. K., & Agyemang, S. (2018). Peri-urbanisation and loss of arable land in Kumasi Metropolis in three decades: Evidence from remote sensing image analysis. Land Use Policy, 72, 470–479. https://doi.org/10.1016/j.landusepol.2018.01.013

Aghaloo, K., & Sharifi, A. (2025). Balancing priorities for a sustainable future in cities: Land use change and urban ecosystem service dynamics. Journal of Environmental Management, 382, 125460. https://doi.org/10.1016/j.jenvman.2025.125460

Alonso, W. (1964). Location and Land Use. Harvard University Press. https://doi.org/10.4159/harvard.9780674730854

Amelia, S., Rustiadi, E., Barus, B., & Juanda, B. (2022). Spatial analysis of the region interaction of the West-East corridor’s strategic economic area of West Sumatra Province, Indonesia. Journal of Socioeconomics and Development, 5(1), 53. https://doi.org/10.31328/jsed.v5i1.3247

Astuty, Y. I., & Dimyati, M. (2024). Prediction of Land Use/Land Cover Change in Indonesia Using The Open Source Land Cover Dataset: A Review. Geodesy and Cartography, 50(2), 67–75. https://doi.org/10.3846/gac.2024.19285

Badan Pusat Statistik. (2023). Kota Malang Dalam Angka 2023. Malang.

Bittner, O., Burian, J., Barvíř, R., Čulová, E., & Jančovič, M. (2025). Exploring land suitability scenarios in Bratislava: a multicriteria analysis with an Urban Planner model. Journal of Maps, 21(1). https://doi.org/10.1080/17445647.2025.2487457

Cobbinah, P. B., Asibey, M. O., & Azumah, A. Dela. (2023). Urban forest and the question of planning-sustainability inadequacy. Cities, 140, 104453. https://doi.org/10.1016/j.cities.2023.104453

Congalton, R. G., & Green, K. (2008). Assessing the Accuracy of Remotely Sensed Data. CRC Press. https://doi.org/10.1201/9781420055139

Dewi S, Johana F, Ekadinata A, & Agung P. (2014). Perencanaan penggunaan lahan untuk strategi pembangunan rendah emisi (Land-use Planning for low-emission development strategies/LUWES). Brief No. 38. Bogor, Indonesia.

Dumdumaya, C. E., & Cabrera, J. S. (2023). Determination of future land use changes using remote sensing imagery and artificial neural network algorithm: A case study of Davao City, Philippines. Artificial Intelligence in Geosciences, 4, 111–118. https://doi.org/10.1016/j.aiig.2023.08.002

Eastman, J. R. (2021). IDRISI TerrSet Tutorial: Land Change Modeler. Clark Labs, Clark University.

Garreau, J. (1991). Edge Cities: Life on the New Frontier. Doubleday.

Gharaibeh, A., Shaamala, A., Obeidat, R., & Al-Kofahi, S. (2020). Improving land-use change modeling by integrating ANN with Cellular Automata-Markov Chain model. Heliyon, 6(9), e05092. https://doi.org/10.1016/j.heliyon.2020.e05092

Gui, B., Bhardwaj, A., & Sam, L. (2025). Cellular automata models for simulation and prediction of urban land use change: Development and prospects. Artificial Intelligence in Geosciences, 6(2), 100142. https://doi.org/10.1016/j.aiig.2025.100142

Jensen, J. R. (1996). Introductory Digital Image Processing: A Remote Sensing Perspective (2nd ed.). Upper Saddle River, NJ: Prentice Hall, Inc.

Juwono, P. T., Subagiyo, A., & Winarta, B. (2022). Neraca Sumber Daya Air dan Ruang Kota Berkelanjutan. Universitas Brawijaya Press.

Kurnianti, D. N., Rustiadi, E., & Baskoro, D. P. T. (2016). Land Use Projection for Spatial Plan Consistency in Jabodetabek. Indonesian Journal of Geography, 47(2), 124. https://doi.org/10.22146/ijg.9249

Landis, J. R., & Koch, G. G. (1977). The Measurement of Observer Agreement for Categorical Data. Biometrics, 33(1), 159. https://doi.org/10.2307/2529310

Lasaiba, M. A. (2023). Pengolahan Data Spasial dalam Perencanaan Penggunaan Lahan yang Berkelanjutan. GEOFORUM, 2(1), 1–12. https://doi.org/10.30598/geoforumvol2iss1pp1-12

Li, H., Liu, Z., Lin, X., Qin, M., Ye, S., & Gao, P. (2024). A novel spatiotemporal urban land change simulation model: Coupling transformer encoder, convolutional neural network, and cellular automata. Journal of Geographical Sciences, 34(11), 2263–2287. https://doi.org/10.1007/s11442-024-2292-1

Muttaqin, M., Samosir, K., Raja, H. D. L., Prasetio, A., Harizahayu, H., Darwas, R., … Tantriawan, H. (2022). BIG DATA: Informasi Dalam Dunia Digital. Yayasan Kita Menulis.

Pravitasari, A. E., Rustiadi, E., Adiwibowo, S., Wardani, I. K., Kurniawan, I., & Murtadho, A. (2020). Dinamika dan Proyeksi Perubahan Tutupan Lahan serta Inkonsistensi Tata Ruang di Wilayah Pegunungan Kendeng. Journal of Regional and Rural Development Planning, 4(2), 99–112. https://doi.org/10.29244/jp2wd.2020.4.2.99-112

Santé, I., García, A. M., Miranda, D., & Crecente, R. (2010). Cellular automata models for the simulation of real-world urban processes: A review and analysis. Landscape and Urban Planning, 96(2), 108–122. https://doi.org/10.1016/j.landurbplan.2010.03.001

Sukamto, S., & Buchori, I. (2019). Model Proyeksi Perubahan Penggunaan Lahan Kawasan Koridor Jalan Utama Berbasis Cellular Automata dan SIG. Jurnal Pembangunan Wilayah & Kota, 14(4), 307. https://doi.org/10.14710/pwk.v14i4.19618

Tejaningrum, M. A., Ardiansyah, M., & Widiatmaka, W. (2019). Evaluasi Terhadap Penggunaan Lahan dan Pola Ruang dalam Rencana Tata Ruang Wilayah di Kabupaten Pontianak, Provinsi Kalimantan Barat. Jurnal Ilmu Tanah Dan Lingkungan, 19(1), 1–5. https://doi.org/10.29244/jitl.19.1.1-5

Verburg, P. H., Schot, P. P., Dijst, M. J., & Veldkamp, A. (2004). Land use change modelling: current practice and research priorities. GeoJournal, 61(4), 309–324. https://doi.org/10.1007/s10708-004-4946-y

Vollmer, D., Pribadi, D. O., Remondi, F., Rustiadi, E., & Grêt-Regamey, A. (2016). Prioritizing ecosystem services in rapidly urbanizing river basins: A spatial multi-criteria analytic approach. Sustainable Cities and Society, 20, 237–252. https://doi.org/10.1016/j.scs.2015.10.004

Wahyuni, N. D., & Wahid, J. (2018). Pengolahan Data Spasial dalam Perencanaan Penggunaan Lahan yang Berkelanjutan. Jurnal Geografi Dan Pendidikan Geografi, 3(2), 15–28.

Wijaya, A., Darma, S., & Darma, D. C. (2020). Spatial Interaction Between Regions: Study of the East Kalimantan Province, Indonesia. International Journal of Sustainable Development and Planning, 15(6), 937–950. https://doi.org/10.18280/ijsdp.150618

Xiang, W.-N., & Clarke, K. C. (2003). The Use of Scenarios in Land-Use Planning. Environment and Planning B: Planning and Design, 30(6), 885–909. https://doi.org/10.1068/b2945

Zhou, Y., Chen, M., Tang, Z., & Mei, Z. (2021). Urbanization, land use change, and carbon emissions: Quantitative assessments for city-level carbon emissions in Beijing-Tianjin-Hebei region. Sustainable Cities and Society, 66, 102701. https://doi.org/10.1016/j.scs.2020.102701

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Published

2026-01-28

How to Cite

Kurniawan, A., & Hanif Ananta Damar Muzaqqi. (2026). Projected Land Use Change Based on Protected Scenarios in Malang City. JURNAL GEOGRAFI, 18(1), 36–51. https://doi.org/10.24114/jg.v18i1.67788