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Food waste reduction and economic savings in times of crisis: The potential of machine learning methods to plan guest attendance in Swedish public catering during the Covid-19 pandemic

Author

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  • Malefors, Christopher
  • Secondi, Luca
  • Marchetti, Stefano
  • Eriksson, Mattias

Abstract

Food waste is a significant problem within public catering establishments in any normal situation. During spring 2020 the Covid-19 pandemic placed the public catering system under greater pressure, revealing weaknesses within the system and generation of food waste due to rapidly changing consumption patterns. In times of crisis, it is especially important to conserve resources and allocate existing resources to areas where they can be of most use, but this poses significant challenges. This study evaluated the potential of a forecasting model to predict guest attendance during the start and throughout the pandemic. This was done by collecting data on guest attendance in Swedish school and preschool catering establishments before and during the pandemic, and using a machine learning approach to predict future guest attendance based on historical data. Comparison of various learning methods revealed that random forest produced more accurate forecasts than a simple artificial neural network, with conditional mean absolute prediction error of <0.15 for the trained dataset. Economic savings were obtained by forecasting compared with a no-plan scenario, supporting selection of the random forest approach for effective forecasting of meal planning. Overall, the results obtained using forecasting models for meal planning in times of crisis confirmed their usefulness. Continuous use can improve estimates for the test period, due to the agile and flexible nature of these models. This is particularly important when guest attendance is unpredictable, so that production planning can be optimized to reduce food waste and contribute to a more sustainable and resilient food system.

Suggested Citation

  • Malefors, Christopher & Secondi, Luca & Marchetti, Stefano & Eriksson, Mattias, 2022. "Food waste reduction and economic savings in times of crisis: The potential of machine learning methods to plan guest attendance in Swedish public catering during the Covid-19 pandemic," Socio-Economic Planning Sciences, Elsevier, vol. 82(PA).
  • Handle: RePEc:eee:soceps:v:82:y:2022:i:pa:s0038012121000331
    DOI: 10.1016/j.seps.2021.101041
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    1. Garre, Alberto & Ruiz, Mari Carmen & Hontoria, Eloy, 2020. "Application of Machine Learning to support production planning of a food industry in the context of waste generation under uncertainty," Operations Research Perspectives, Elsevier, vol. 7(C).
    2. Garnett, Tara, 2011. "Where are the best opportunities for reducing greenhouse gas emissions in the food system (including the food chain)?," Food Policy, Elsevier, vol. 36(S1), pages 23-32.
    3. Christopher Malefors & Pieter Callewaert & Per-Anders Hansson & Hanna Hartikainen & Oona Pietiläinen & Ingrid Strid & Christina Strotmann & Mattias Eriksson, 2019. "Towards a Baseline for Food-Waste Quantification in the Hospitality Sector—Quantities and Data Processing Criteria," Sustainability, MDPI, vol. 11(13), pages 1-22, June.
    4. Mustafa Yurtsever & Vahap Tecim, 2020. "Forecasting Meal Requirements Using Time Series Methods in Organization," Springer Proceedings in Business and Economics, in: Marietta Janowicz-Lomott & Krzysztof Łyskawa & Persefoni Polychronidou & Anastasios Karasavvoglou (ed.), Economic and Financial Challenges for Balkan and Eastern European Countries, pages 243-254, Springer.
    5. Nair, Divya J. & Rashidi, Taha Hossein & Dixit, Vinayak V., 2017. "Estimating surplus food supply for food rescue and delivery operations," Socio-Economic Planning Sciences, Elsevier, vol. 57(C), pages 73-83.
    6. Mattias Eriksson & Christopher Malefors & Pauline Bergström & Emelie Eriksson & Christine Persson Osowski, 2020. "Quantities and Quantification Methodologies of Food Waste in Swedish Hospitals," Sustainability, MDPI, vol. 12(8), pages 1-12, April.
    7. Bojana Bajželj & Keith S. Richards & Julian M. Allwood & Pete Smith & John S. Dennis & Elizabeth Curmi & Christopher A. Gilligan, 2014. "Importance of food-demand management for climate mitigation," Nature Climate Change, Nature, vol. 4(10), pages 924-929, October.
    8. Ocampo, Lanndon & Yamagishi, Kafferine, 2020. "Modeling the lockdown relaxation protocols of the Philippine government in response to the COVID-19 pandemic: An intuitionistic fuzzy DEMATEL analysis," Socio-Economic Planning Sciences, Elsevier, vol. 72(C).
    9. Jonathan A. Foley & Navin Ramankutty & Kate A. Brauman & Emily S. Cassidy & James S. Gerber & Matt Johnston & Nathaniel D. Mueller & Christine O’Connell & Deepak K. Ray & Paul C. West & Christian Balz, 2011. "Solutions for a cultivated planet," Nature, Nature, vol. 478(7369), pages 337-342, October.
    10. Tim Newbold & Lawrence N. Hudson & Samantha L. L. Hill & Sara Contu & Igor Lysenko & Rebecca A. Senior & Luca Börger & Dominic J. Bennett & Argyrios Choimes & Ben Collen & Julie Day & Adriana De Palma, 2015. "Global effects of land use on local terrestrial biodiversity," Nature, Nature, vol. 520(7545), pages 45-50, April.
    11. Matthew James Grainger & Lusine Aramyan & Simone Piras & Thomas Edward Quested & Simone Righi & Marco Setti & Matteo Vittuari & Gavin Bruce Stewart, 2018. "Model selection and averaging in the assessment of the drivers of household food waste to reduce the probability of false positives," PLOS ONE, Public Library of Science, vol. 13(2), pages 1-16, February.
    12. Garnett, Tara, 2011. "Where are the best opportunities for reducing greenhouse gas emissions in the food system (including the food chain)?," Food Policy, Elsevier, vol. 36(Supplemen), pages 23-32, January.
    13. Engstrom, Rebecka & Carlsson-Kanyama, Annika, 2004. "Food losses in food service institutions Examples from Sweden," Food Policy, Elsevier, vol. 29(3), pages 203-213, June.
    14. Luca Falasconi & Matteo Vittuari & Alessandro Politano & Andrea Segrè, 2015. "Food Waste in School Catering: An Italian Case Study," Sustainability, MDPI, vol. 7(11), pages 1-16, November.
    15. Marco Springmann & Michael Clark & Daniel Mason-D’Croz & Keith Wiebe & Benjamin Leon Bodirsky & Luis Lassaletta & Wim Vries & Sonja J. Vermeulen & Mario Herrero & Kimberly M. Carlson & Malin Jonell & , 2018. "Options for keeping the food system within environmental limits," Nature, Nature, vol. 562(7728), pages 519-525, October.
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