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Development of an Agricultural Primary Productivity Decision Support Model: A Case Study in France

Author

Listed:
  • Taru Sandén

    (Austrian Agency for Health and Food Safety)

  • Aneta Trajanov

    (IJS - Jozef Stefan Institute [Ljubljana], Jozef Stefan International Postgraduate School [Ljubljana, Slovenia])

  • Heide Spiegel

    (Austrian Agency for Health and Food Safety)

  • Vladimir Kuzmanovski

    (IJS - Jozef Stefan Institute [Ljubljana])

  • Nicolas Saby

    (InfoSol - InfoSol - INRA - Institut National de la Recherche Agronomique)

  • Calypso Picaud

    (US ODR - Observatoire des Programmes Communautaires de Développement Rural - INRA - Institut National de la Recherche Agronomique)

  • Christian Bugge Henriksen

    (UCPH - University of Copenhagen = Københavns Universitet)

  • Marko Debeljak

    (IJS - Jozef Stefan Institute [Ljubljana], Jozef Stefan International Postgraduate School [Ljubljana, Slovenia])

Abstract

Agricultural soils provide society with several functions, one of which is primary productivity. This function is defined as the capacity of a soil to supply nutrients and water and to produce plant biomass for human use, providing food, feed, fiber, and fuel. For farmers, the productivity function delivers an economic basis and is a prerequisite for agricultural sustainability. Our study was designed to develop an agricultural primary productivity decision support model. To obtain a highly accurate decision support model that helps farmers and advisors to assess and manage the provision of the primary productivity soil function on their agricultural fields, we addressed the following specific objectives: (i) to construct a qualitative decision support model to assess the primary productivity soil function at the agricultural field level; (ii) to carry out verification, calibration, and sensitivity analysis of this model; and (iii) to validate the model based on empirical data. The result is a hierarchical qualitative model consisting of 25 input attributes describing soil properties, environmental conditions, cropping specifications, and management practices on each respective field. An extensive dataset from France containing data from 399 sites was used to calibrate and validate the model. The large amount of data enabled data mining to support model calibration. The accuracy of the decision support model prior to calibration supported by data mining was similar to 40%. The data mining approach improved the accuracy to 77%. The proposed methodology of combining decision modeling and data mining proved to be an important step forward. This iterative approach yielded an accurate, reliable, and useful decision support model for the assessment of the primary productivity soil function at the field level. This can assist farmers and advisors in selecting the most appropriate crop management practices. Embedding this decision support model in a set of complementary models for four adjacent soil functions, as endeavored in the H2020 LANDMARK project, will help take the integrated sustainability of arable cropping systems to a new level.

Suggested Citation

  • Taru Sandén & Aneta Trajanov & Heide Spiegel & Vladimir Kuzmanovski & Nicolas Saby & Calypso Picaud & Christian Bugge Henriksen & Marko Debeljak, 2019. "Development of an Agricultural Primary Productivity Decision Support Model: A Case Study in France," Post-Print hal-02170445, HAL.
  • Handle: RePEc:hal:journl:hal-02170445
    DOI: 10.3389/fenvs.2019.00058
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    Citations

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    Cited by:

    1. Schreefel, L. & de Boer, I.J.M. & Timler, C.J. & Groot, J.C.J. & Zwetsloot, M.J. & Creamer, R.E. & Schrijver, A. Pas & van Zanten, H.H.E. & Schulte, R.P.O., 2022. "How to make regenerative practices work on the farm: A modelling framework," Agricultural Systems, Elsevier, vol. 198(C).
    2. Rui Zhao & Kening Wu, 2021. "Soil Health Evaluation of Farmland Based on Functional Soil Management—A Case Study of Yixing City, Jiangsu Province, China," Agriculture, MDPI, vol. 11(7), pages 1-27, June.
    3. Rui Zhao & Junying Li & Kening Wu & Long Kang, 2021. "Cultivated Land Use Zoning Based on Soil Function Evaluation from the Perspective of Black Soil Protection," Land, MDPI, vol. 10(6), pages 1-29, June.
    4. Schreefel, L. & van Zanten, H.H.E. & Groot, J.C.J. & Timler, C.J. & Zwetsloot, M.J. & Schrijver, A. Pas & Creamer, R.E. & Schulte, R.P.O. & de Boer, I.J.M., 2022. "Tailor-made solutions for regenerative agriculture in the Netherlands," Agricultural Systems, Elsevier, vol. 203(C).

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