Agent-Based Modeling for Integrating Human Behavior into the Food–Energy–Water Nexus

The nexus of food, energy, and water systems (FEWS) has become a salient research topic, as well as a pressing societal and policy challenge. Computational modeling is a key tool in addressing these challenges, and FEWS modeling as a subfield is now established. However, social dimensions of FEWS ne...

Full description

Bibliographic Details
Main Author: Nicholas R. Magliocca
Format: Article
Language:English
Published: MDPI AG 2020-12-01
Series:Land
Subjects:
Online Access:https://www.mdpi.com/2073-445X/9/12/519
id doaj-33971e2aa6644f5bb42c5451012e97c9
record_format Article
spelling doaj-33971e2aa6644f5bb42c5451012e97c92020-12-16T00:00:04ZengMDPI AGLand2073-445X2020-12-01951951910.3390/land9120519Agent-Based Modeling for Integrating Human Behavior into the Food–Energy–Water NexusNicholas R. Magliocca0Department of Geography, University of Alabama, 513 University Blvd., Box 870322, Tuscaloosa, AL 35401, USAThe nexus of food, energy, and water systems (FEWS) has become a salient research topic, as well as a pressing societal and policy challenge. Computational modeling is a key tool in addressing these challenges, and FEWS modeling as a subfield is now established. However, social dimensions of FEWS nexus issues, such as individual or social learning, technology adoption decisions, and adaptive behaviors, remain relatively underdeveloped in FEWS modeling and research. Agent-based models (ABMs) have received increasing usage recently in efforts to better represent and integrate human behavior into FEWS research. A systematic review identified 29 articles in which at least two food, energy, or water sectors were explicitly considered with an ABM and/or ABM-coupled modeling approach. Agent decision-making and behavior ranged from reactive to active, motivated by primarily economic objectives to multi-criteria in nature, and implemented with individual-based to highly aggregated entities. However, a significant proportion of models did not contain agent interactions, or did not base agent decision-making on existing behavioral theories. Model design choices imposed by data limitations, structural requirements for coupling with other simulation models, or spatial and/or temporal scales of application resulted in agent representations lacking explicit decision-making processes or social interactions. In contrast, several methodological innovations were also noted, which were catalyzed by the challenges associated with developing multi-scale, cross-sector models. Several avenues for future research with ABMs in FEWS research are suggested based on these findings. The reviewed ABM applications represent progress, yet many opportunities for more behaviorally rich agent-based modeling in the FEWS context remain.https://www.mdpi.com/2073-445X/9/12/519sustainabilitysimulation modelinglarge-scale behavioral modelingintegrated water resources managementnexus-plus
collection DOAJ
language English
format Article
sources DOAJ
author Nicholas R. Magliocca
spellingShingle Nicholas R. Magliocca
Agent-Based Modeling for Integrating Human Behavior into the Food–Energy–Water Nexus
Land
sustainability
simulation modeling
large-scale behavioral modeling
integrated water resources management
nexus-plus
author_facet Nicholas R. Magliocca
author_sort Nicholas R. Magliocca
title Agent-Based Modeling for Integrating Human Behavior into the Food–Energy–Water Nexus
title_short Agent-Based Modeling for Integrating Human Behavior into the Food–Energy–Water Nexus
title_full Agent-Based Modeling for Integrating Human Behavior into the Food–Energy–Water Nexus
title_fullStr Agent-Based Modeling for Integrating Human Behavior into the Food–Energy–Water Nexus
title_full_unstemmed Agent-Based Modeling for Integrating Human Behavior into the Food–Energy–Water Nexus
title_sort agent-based modeling for integrating human behavior into the food–energy–water nexus
publisher MDPI AG
series Land
issn 2073-445X
publishDate 2020-12-01
description The nexus of food, energy, and water systems (FEWS) has become a salient research topic, as well as a pressing societal and policy challenge. Computational modeling is a key tool in addressing these challenges, and FEWS modeling as a subfield is now established. However, social dimensions of FEWS nexus issues, such as individual or social learning, technology adoption decisions, and adaptive behaviors, remain relatively underdeveloped in FEWS modeling and research. Agent-based models (ABMs) have received increasing usage recently in efforts to better represent and integrate human behavior into FEWS research. A systematic review identified 29 articles in which at least two food, energy, or water sectors were explicitly considered with an ABM and/or ABM-coupled modeling approach. Agent decision-making and behavior ranged from reactive to active, motivated by primarily economic objectives to multi-criteria in nature, and implemented with individual-based to highly aggregated entities. However, a significant proportion of models did not contain agent interactions, or did not base agent decision-making on existing behavioral theories. Model design choices imposed by data limitations, structural requirements for coupling with other simulation models, or spatial and/or temporal scales of application resulted in agent representations lacking explicit decision-making processes or social interactions. In contrast, several methodological innovations were also noted, which were catalyzed by the challenges associated with developing multi-scale, cross-sector models. Several avenues for future research with ABMs in FEWS research are suggested based on these findings. The reviewed ABM applications represent progress, yet many opportunities for more behaviorally rich agent-based modeling in the FEWS context remain.
topic sustainability
simulation modeling
large-scale behavioral modeling
integrated water resources management
nexus-plus
url https://www.mdpi.com/2073-445X/9/12/519
work_keys_str_mv AT nicholasrmagliocca agentbasedmodelingforintegratinghumanbehaviorintothefoodenergywaternexus
_version_ 1724381954234646528