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Herbicide‐resistant weed management with robots: A weed ecological–economic model

Author

Listed:
  • Chengzheng Yu
  • Madhu Khanna
  • Shady S. Atallah
  • Saurajyoti Kar
  • Muthukumar Bagavathiannan
  • Girish Chowdhary

Abstract

The heavy reliance on herbicides for weed control has led to an increase in resistant weeds in the United States. Robotic weed control is emerging as an alternative technology for removing weeds mechanically using artificial intelligence. We develop an integrated weed ecological and economic dynamic (I‐WEED) model to examine the biophysical and economic drivers of adopting robotic weed management and simulate the optimal timing and intensity of robotic adoption within and across growing seasons. We specify a cohort‐based weed growth model that relates yield damages to effective weed density and treats the susceptibility of weeds to herbicides as a renewable resource that can be regenerated by using mechanical weeding robots, due to a fitness cost that makes resistant weeds less prolific. Compared to myopic weed management which ignores resistance development, forward‐looking management leads to earlier adoption of robots and treating robots as complements instead of substitutes to herbicides. This weed management results in adopting fewer robots, deploying robots on a smaller portion of the land, higher profitability, and lower yield loss in the long run, relative to myopic management. Counterintuitively, myopic management leads to a lower resistance level through its higher robot adoption intensity. We also find that a lower level of initial weed seed resistance and/or a higher fitness cost result in a higher level of resistance because they create incentives for farmers to delay the adoption of robotic weed control. Our analysis shows the importance of jointly considering the interactions between weed ecology and economics in analyzing the incentives and effects of robotic weed management on weed resistance.

Suggested Citation

  • Chengzheng Yu & Madhu Khanna & Shady S. Atallah & Saurajyoti Kar & Muthukumar Bagavathiannan & Girish Chowdhary, 2024. "Herbicide‐resistant weed management with robots: A weed ecological–economic model," Agricultural Economics, International Association of Agricultural Economists, vol. 55(6), pages 943-962, November.
  • Handle: RePEc:bla:agecon:v:55:y:2024:i:6:p:943-962
    DOI: 10.1111/agec.12856
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    References listed on IDEAS

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    1. David J. Pannell, 1995. "Optimal Herbicide Strategies for Weed Control under Risk Aversion," Review of Agricultural Economics, Agricultural and Applied Economics Association, vol. 17(3), pages 337-350.
    2. Scott M. Swinton & Braeden Deynze, 2017. "Hoes to Herbicides: Economics of Evolving Weed Management in the United States," The European Journal of Development Research, Palgrave Macmillan;European Association of Development Research and Training Institutes (EADI), vol. 29(3), pages 560-574, July.
    3. Bennett, Anne L. & Pannell, David J., 1998. "Economic evaluation of a weed-activated sprayer for herbicide application to patchy weed populations," Australian Journal of Agricultural and Resource Economics, Australian Agricultural and Resource Economics Society, vol. 42(4), pages 1-20.
    4. Xingliang Ma & Guanming Shi, 2015. "A dynamic adoption model with Bayesian learning: an application to U.S. soybean farmers," Agricultural Economics, International Association of Agricultural Economists, vol. 46(1), pages 25-38, January.
    5. Graeme J. Doole & David J. Pannell, 2008. "Optimisation of a Large, Constrained Simulation Model using Compressed Annealing," Journal of Agricultural Economics, Wiley Blackwell, vol. 59(1), pages 188-206, February.
    6. Allen, Douglas & Lueck, Dean, 1992. "Contract Choice in Modern Agriculture: Cash Rent versus Cropshare," Journal of Law and Economics, University of Chicago Press, vol. 35(2), pages 397-426, October.
    7. Jesusa C. Beltran & Benedict White & Michael Burton & Graeme J. Doole & David J. Pannell, 2013. "Determinants of herbicide use in rice production in the Philippines," Agricultural Economics, International Association of Agricultural Economists, vol. 44(1), pages 45-55, January.
    8. Rick S. Llewellyn & Robert K. Lindner & David J. Pannell & Stephen B. Powles, 2007. "Herbicide resistance and the adoption of integrated weed management by Western Australian grain growers," Agricultural Economics, International Association of Agricultural Economists, vol. 36(1), pages 123-130, January.
    9. D. Hueth & U. Regev, 1974. "Optimal Agricultural Pest Management with Increasing Pest Resistance," American Journal of Agricultural Economics, Agricultural and Applied Economics Association, vol. 56(3), pages 543-552.
    10. Ervin, David & Frisvold, George B., 2016. "Are Community-Based Approaches to Manage Herbicide Resistance Wisdom or Folly?," Choices: The Magazine of Food, Farm, and Resource Issues, Agricultural and Applied Economics Association, vol. 31(4), pages 1-8, December.
    11. Swinton, Scott M. & King, Robert P., 1994. "A bioeconomic model for weed management in corn and soybean," Agricultural Systems, Elsevier, vol. 44(3), pages 313-335.
    12. Pannell, David J., 1995. "Optimal Herbicide Strategies Given Yield and Quality Impacts of Weeds," Review of Marketing and Agricultural Economics, Australian Agricultural and Resource Economics Society, vol. 63(02), pages 1-7, August.
    13. Jeff Luckstead & Rodolfo M. Nayga & Heather A. Snell, 2023. "US domestic workers' willingness to accept agricultural field jobs," Applied Economic Perspectives and Policy, John Wiley & Sons, vol. 45(3), pages 1693-1715, September.
    14. Laxminarayan, Ramanan & Brown, Gardner M., 2001. "Economics of Antibiotic Resistance: A Theory of Optimal Use," Journal of Environmental Economics and Management, Elsevier, vol. 42(2), pages 183-206, September.
    15. Ramanan Laxminarayan & R. Simpson, 2002. "Refuge Strategies for Managing Pest Resistance in Transgenic Agriculture," Environmental & Resource Economics, Springer;European Association of Environmental and Resource Economists, vol. 22(4), pages 521-536, August.
    16. D. J. Pannell, 1990. "Responses To Risk In Weed Control Decisions Under Expected Profit Maximisation," Journal of Agricultural Economics, Wiley Blackwell, vol. 41(3), pages 391-401, September.
    17. Bigelow, Daniel & Borchers, Allison & Hubbs, Todd, "undated". "U.S. Farmland Ownership, Tenure, and Transfer," Economic Information Bulletin 262138, United States Department of Agriculture, Economic Research Service.
    18. Braeden Van Deynze & Scott M. Swinton & David A. Hennessy, 2022. "Are glyphosate‐resistant weeds a threat to conservation agriculture? Evidence from tillage practices in soybeans," American Journal of Agricultural Economics, John Wiley & Sons, vol. 104(2), pages 645-672, March.
    19. Beltran, Jesusa C. & Pannell, David J. & Doole, Graeme J. & White, Benedict, 2012. "A bioeconomic model for analysis of integrated weed management strategies for annual barnyardgrass (Echinochloa crus-galli complex) in Philippine rice farming systems," Agricultural Systems, Elsevier, vol. 112(C), pages 1-10.
    20. Ervin, David E. & Breshears, Elise H. & Frisvold, George B. & Hurley, Terrance & Dentzman, Katherine E. & Gunsolus, Jeffrey L. & Jussaume, Raymond A. & Owen, Micheal D.K. & Norsworthy, Jason K. & Al M, 2019. "Farmer Attitudes Toward Cooperative Approaches to Herbicide Resistance Management: A Common Pool Ecosystem Service Challenge," Ecological Economics, Elsevier, vol. 157(C), pages 237-245.
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