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Mapping, intensities and future prediction of land use/land cover dynamics using google earth engine and CA- artificial neural network model

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Listed:
  • Maysoon A A Osman
  • Elfatih M Abdel-Rahman
  • Joshua Orungo Onono
  • Lydia A Olaka
  • Muna M Elhag
  • Marian Adan
  • Henri E Z Tonnang

Abstract

Mapping of land use/ land cover (LULC) dynamics has gained significant attention in the past decades. This is due to the role played by LULC change in assessing climate, various ecosystem functions, natural resource activities and livelihoods in general. In Gedaref landscape of Eastern Sudan, there is limited or no knowledge of LULC structure and size, degree of change, transition, intensity and future outlook. Therefore, the aims of the current study were to (1) evaluate LULC changes in the Gedaref state, Sudan for the past thirty years (1988–2018) using Landsat imageries and the random forest classifier, (2) determine the underlying dynamics that caused the changes in the landscape structure using intensity analysis, and (3) predict future LULC outlook for the years 2028 and 2048 using cellular automata-artificial neural network (CA-ANN). The results exhibited drastic LULC dynamics driven mainly by cropland and settlement expansions, which increased by 13.92% and 319.61%, respectively, between 1988 and 2018. In contrast, forest and grassland declined by 56.47% and 56.23%, respectively. Moreover, the study shows that the gains in cropland coverage in Gedaref state over the studied period were at the expense of grassland and forest acreage, whereas the gains in settlements partially targeted cropland. Future LULC predictions showed a slight increase in cropland area from 89.59% to 90.43% and a considerable decrease in forest area (0.47% to 0.41%) between 2018 and 2048. Our findings provide reliable information on LULC patterns in Gedaref region that could be used for designing land use and environmental conservation frameworks for monitoring crop produce and grassland condition. In addition, the result could help in managing other natural resources and mitigating landscape fragmentation and degradation.

Suggested Citation

  • Maysoon A A Osman & Elfatih M Abdel-Rahman & Joshua Orungo Onono & Lydia A Olaka & Muna M Elhag & Marian Adan & Henri E Z Tonnang, 2023. "Mapping, intensities and future prediction of land use/land cover dynamics using google earth engine and CA- artificial neural network model," PLOS ONE, Public Library of Science, vol. 18(7), pages 1-28, July.
  • Handle: RePEc:plo:pone00:0288694
    DOI: 10.1371/journal.pone.0288694
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    1. Abera Assefa Biratu & Bobe Bedadi & Solomon Gebreyohannis Gebrehiwot & Assefa M. Melesse & Tilahun Hordofa Nebi & Wuletawu Abera & Lulseged Tamene & Anthony Egeru, 2022. "Ecosystem Service Valuation along Landscape Transformation in Central Ethiopia," Land, MDPI, vol. 11(4), pages 1-18, March.
    2. Kristian Näschen & Bernd Diekkrüger & Mariele Evers & Britta Höllermann & Stefanie Steinbach & Frank Thonfeld, 2019. "The Impact of Land Use/Land Cover Change (LULCC) on Water Resources in a Tropical Catchment in Tanzania under Different Climate Change Scenarios," Sustainability, MDPI, vol. 11(24), pages 1-28, December.
    3. Evelyn Asante-Yeboah & George Ashiagbor & Kwabena Asubonteng & Stefan Sieber & Justice C. Mensah & Christine Fürst, 2022. "Analyzing Variations in Size and Intensities in Land Use Dynamics for Sustainable Land Use Management: A Case of the Coastal Landscapes of South-Western Ghana," Land, MDPI, vol. 11(6), pages 1-28, May.
    4. Beatrice Asenso Barnieh & Li Jia & Massimo Menenti & Jie Zhou & Yelong Zeng, 2020. "Mapping Land Use Land Cover Transitions at Different Spatiotemporal Scales in West Africa," Sustainability, MDPI, vol. 12(20), pages 1-52, October.
    5. Muhammad Hadi Saputra & Han Soo Lee, 2019. "Prediction of Land Use and Land Cover Changes for North Sumatra, Indonesia, Using an Artificial-Neural-Network-Based Cellular Automaton," Sustainability, MDPI, vol. 11(11), pages 1-16, May.
    6. Rizwan Muhammad & Wenyin Zhang & Zaheer Abbas & Feng Guo & Luc Gwiazdzinski, 2022. "Spatiotemporal Change Analysis and Prediction of Future Land Use and Land Cover Changes Using QGIS MOLUSCE Plugin and Remote Sensing Big Data: A Case Study of Linyi, China," Land, MDPI, vol. 11(3), pages 1-24, March.
    7. Fengqiang Wu & Caijian Mo & Xiaojun Dai, 2022. "Analysis of the Driving Force of Land Use Change Based on Geographic Detection and Simulation of Future Land Use Scenarios," Sustainability, MDPI, vol. 14(9), pages 1-17, April.
    8. Mohmmed, Alnail & Li, Jianhua & Elaru, Joshua & Elbashier, Mohammed M.A. & Keesstra, Saskia & Artemi, Cerdà & Martin, Kabenge & Reuben, Makomere & Teffera, Zeben, 2018. "Assessing drought vulnerability and adaptation among farmers in Gadaref region, Eastern Sudan," Land Use Policy, Elsevier, vol. 70(C), pages 402-413.
    9. Karina Winkler & Richard Fuchs & Mark Rounsevell & Martin Herold, 2021. "Global land use changes are four times greater than previously estimated," Nature Communications, Nature, vol. 12(1), pages 1-10, December.
    10. Hassan, Rashid & Hertzler, Greg & Benhin, James K.A., 2009. "Depletion of forest resources in Sudan: Intervention options for optimal control," Energy Policy, Elsevier, vol. 37(4), pages 1195-1203, April.
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