印度尼西亚Cisadane流域不同情景下土地利用/土地覆盖预测模型:对森林砍伐和粮食安全的影响

IF 3.7 3区 地球科学 Q2 ENVIRONMENTAL SCIENCES Egyptian Journal of Remote Sensing and Space Sciences Pub Date : 2023-08-01 DOI:10.1016/j.ejrs.2023.04.002
Wiwin Ambarwulan , Fajar Yulianto , Widiatmaka Widiatmaka , Ati Rahadiati , Suria Darma Tarigan , Irman Firmansyah , Muhrina Anggun Sari Hasibuan
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引用次数: 1

摘要

超过其承载能力的关键流域出现在世界许多区域;土地利用/土地覆盖(LULC)变化这一重要驱动因素促进了它们的形成。本研究旨在确定印度尼西亚Cisadane流域2010年、2015年和2021年的LULC变化,并模拟2030年和2050年的未来LULC。Landsat 2010和2015以及Sentinel 2A从2020年开始使用随机森林来获得LULC地图。本文应用多层感知马尔可夫链(MLP-MC)下的土地变化模型(LCM)对未来三种情景下的土地变化变化进行了预测。这三种情况分别是:一切照旧(BAU)、保护稻田(PPF)和保护森林(PFA)。结果表明,所有的LULC地图都具有良好的精度,总体精度为83%。此外,BAU对森林和水田面积减少的影响最大。PPF会造成森林损失,而PFA会减少水田面积。在维持粮食安全和保护自然资源之间存在权衡。该研究揭示了在人口增长导致资源需求增加而现有土地资源有限的情况下,未来有效的土地利用规划的重要性。
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Modelling land use/land cover projection using different scenarios in the Cisadane Watershed, Indonesia: Implication on deforestation and food security

Critical watersheds that exceed their carrying capacity occur in many regions of the world; their formation is facilitated by a significant driving factor known as land use/land cover (LULC) changes. This study aims to identify the LULC changes in Cisadane Watershed, Indonesia, in 2010, 2015, 2021, and simulate future LULC for 2030 and 2050. Landsat 2010 and 2015 and Sentinel 2A images from 2020 were employed for deriving LULC maps using Random Forest. This study applied a Land change modeler (LCM) under the multi-layer perception Markov chain (MLP-MC) to predict the future LULC in three scenarios. The scenarios are business as usual (BAU), protecting paddy fields (PPF), and protecting forest areas (PFA). The results showed that all the LULC maps demonstrated excellent accuracy, indicated by >83% overall accuracy. Furthermore, BAU produces the worst effect of decreasing forest and paddy field areas. PPF tends to cause forest loss, while PFA is predicted to reduce the paddy fields. There is a trade-off between maintaining food security and conserving natural resources. The study reveals the importance of efficient land use planning in the future amidst increasing resource demand due to population growth while existing land resources are limited.

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来源期刊
CiteScore
8.10
自引率
0.00%
发文量
85
审稿时长
48 weeks
期刊介绍: The Egyptian Journal of Remote Sensing and Space Sciences (EJRS) encompasses a comprehensive range of topics within Remote Sensing, Geographic Information Systems (GIS), planetary geology, and space technology development, including theories, applications, and modeling. EJRS aims to disseminate high-quality, peer-reviewed research focusing on the advancement of remote sensing and GIS technologies and their practical applications for effective planning, sustainable development, and environmental resource conservation. The journal particularly welcomes innovative papers with broad scientific appeal.
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