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Retrieving the National Main Commodity Maps in Indonesia Based on High-Resolution Remotely Sensed Data Using Cloud Computing Platform

Author

Listed:
  • Aryo Adhi Condro

    (Tropical Biodiversity Conservation Program, Department of Forest Resources Conservation and Ecotourism, Faculty of Forestry, IPB University (Bogor Agricultural University), Kampus IPB Darmaga Bogor 16680, Indonesia)

  • Yudi Setiawan

    (Department of Forest Resources Conservation and Ecotourism, Faculty of Forestry, IPB University (Bogor Agricultural University), Kampus IPB Darmaga Bogor 16680, Indonesia)

  • Lilik Budi Prasetyo

    (Department of Forest Resources Conservation and Ecotourism, Faculty of Forestry, IPB University (Bogor Agricultural University), Kampus IPB Darmaga Bogor 16680, Indonesia)

  • Rahmat Pramulya

    (Faculty of Agriculture, University of Teuku Umar, Meulaboh, Aceh Barat, Aceh 23681, Indonesia)

  • Lasriama Siahaan

    (Natural Resources and Environmental Management Studies Program, Graduate School of IPB University (Bogor Agricultural University), Kampus IPB Baranangsiang Bogor 16129, Indonesia)

Abstract

Indonesia has the most favorable climates for agriculture because of its location in the tropical climatic zones. The country has several commodities to support economics growth that are driven by key export commodities—e.g., oil palm, rubber, paddy, cacao, and coffee. Thus, identifying the main commodities in Indonesia using spatially-explicit tools is essential to understand the precise productivity derived from the agricultural sectors. Many previous studies have used predictions developed using binary maps of general crop cover. Here, we present national commodity maps for Indonesia based on remote sensing data using Google Earth Engine. We evaluated a machine learning algorithm—i.e., Random Forest to parameterize how the area in commodity varied in Indonesia. We used various predictors to estimate the productivity of various commodities based on multispectral satellite imageries (36 predictors) at 30-meters spatial resolution. The national commodity map has a relatively high accuracy, with an overall accuracy of about 95% and Kappa coefficient of about 0.90. The results suggest that the oil palm plantation was the highest commodity product that occupied the largest land of Indonesia. However, this study also showed that the land area in rubber, rice paddies, and cacao commodities was underestimated due to its lack of training samples. Improvement in training data collection for each commodity should be done to increase the accuracy of the commodity maps. The commodity data can be viewed online (website can be found in the end of conclusions). This data can further provide significant information related to the agricultural sectors to investigate food provisioning, particularly in Indonesia.

Suggested Citation

  • Aryo Adhi Condro & Yudi Setiawan & Lilik Budi Prasetyo & Rahmat Pramulya & Lasriama Siahaan, 2020. "Retrieving the National Main Commodity Maps in Indonesia Based on High-Resolution Remotely Sensed Data Using Cloud Computing Platform," Land, MDPI, vol. 9(10), pages 1-15, October.
  • Handle: RePEc:gam:jlands:v:9:y:2020:i:10:p:377-:d:424785
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    References listed on IDEAS

    as
    1. Austin, K.G. & Mosnier, A. & Pirker, J. & McCallum, I. & Fritz, S. & Kasibhatla, P.S., 2017. "Shifting patterns of oil palm driven deforestation in Indonesia and implications for zero-deforestation commitments," Land Use Policy, Elsevier, vol. 69(C), pages 41-48.
    2. Jean-François Pekel & Andrew Cottam & Noel Gorelick & Alan S. Belward, 2016. "High-resolution mapping of global surface water and its long-term changes," Nature, Nature, vol. 540(7633), pages 418-422, December.
    3. Purnomo, Herry & Okarda, Beni & Dermawan, Ahmad & Ilham, Qori Pebrial & Pacheco, Pablo & Nurfatriani, Fitri & Suhendang, Endang, 2020. "Reconciling oil palm economic development and environmental conservation in Indonesia: A value chain dynamic approach," Forest Policy and Economics, Elsevier, vol. 111(C).
    4. Jelsma, Idsert & Woittiez, Lotte S. & Ollivier, Jean & Dharmawan, Arya Hadi, 2019. "Do wealthy farmers implement better agricultural practices? An assessment of implementation of Good Agricultural Practices among different types of independent oil palm smallholders in Riau, Indonesia," Agricultural Systems, Elsevier, vol. 170(C), pages 63-76.
    5. Yamamoto, Yuki & Shigetomi, Yosuke & Ishimura, Yuichi & Hattori, Mitsuru, 2019. "Forest change and agricultural productivity: Evidence from Indonesia," World Development, Elsevier, vol. 114(C), pages 196-207.
    6. Hoffmann, Munir P. & Cock, James & Samson, Marianne & Janetski, Noel & Janetski, Kate & Rötter, Reimund P. & Fisher, Myles & Oberthür, Thomas, 2020. "Fertilizer management in smallholder cocoa farms of Indonesia under variable climate and market prices," Agricultural Systems, Elsevier, vol. 178(C).
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