A Transparent and Intuitive Modeling Framework and Software for Efficient Land Allocation

The purpose of this research is to better conserve biodiversity by improving land allocation modeling software. Here we introduce a planning support framework designed to be understood by and useful to land managers, stakeholders, and other decision-makers. With understanding comes trust and engagem...

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Published inLand (Basel) Vol. 9; no. 11; p. 444
Main Authors Gallo, John, Aplet, Gregory, Greene, Randal, Thomson, Janice, Lombard, Amanda
Format Journal Article
LanguageEnglish
Published Basel MDPI AG 01.11.2020
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Abstract The purpose of this research is to better conserve biodiversity by improving land allocation modeling software. Here we introduce a planning support framework designed to be understood by and useful to land managers, stakeholders, and other decision-makers. With understanding comes trust and engagement, which often yield better implementation of model results. To do this, we break from traditional software such as Zonation and Marxan with Zones to prototype software that instead first asks the project team and stakeholders to make a straightforward multi-criteria decision tree used for traditional site evaluation analyses. The results can be used as is or fed into an algorithm for identifying a land allocation solution that is efficient in meeting several objectives including maximizing habitat representation, connectivity, and adjacency at a set cost budget. We tested the framework in five pilot regions and share the lessons learned from each, with a detailed description and evaluation of the fifth (in the central Sierra Nevada mountains of California) where the software effectively met the multiple objectives, for multiple zones (Restoration, Innovation, and Observation Zones). The framework is sufficiently general that it can be applied to a wide range of land use planning efforts.
AbstractList The purpose of this research is to better conserve biodiversity by improving land allocation modeling software. Here we introduce a planning support framework designed to be understood by and useful to land managers, stakeholders, and other decision-makers. With understanding comes trust and engagement, which often yield better implementation of model results. To do this, we break from traditional software such as Zonation and Marxan with Zones to prototype software that instead first asks the project team and stakeholders to make a straightforward multi-criteria decision tree used for traditional site evaluation analyses. The results can be used as is or fed into an algorithm for identifying a land allocation solution that is efficient in meeting several objectives including maximizing habitat representation, connectivity, and adjacency at a set cost budget. We tested the framework in five pilot regions and share the lessons learned from each, with a detailed description and evaluation of the fifth (in the central Sierra Nevada mountains of California) where the software effectively met the multiple objectives, for multiple zones (Restoration, Innovation, and Observation Zones). The framework is sufficiently general that it can be applied to a wide range of land use planning efforts.
Author Aplet, Gregory
Lombard, Amanda
Gallo, John
Greene, Randal
Thomson, Janice
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CitedBy_id crossref_primary_10_3390_land12010067
crossref_primary_10_3390_land12010254
crossref_primary_10_3390_ijgi10120823
crossref_primary_10_3390_land10050478
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SSID ssj0000913845
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Snippet The purpose of this research is to better conserve biodiversity by improving land allocation modeling software. Here we introduce a planning support framework...
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StartPage 444
SubjectTerms Algorithms
Biodiversity
climate change
Collaboration
Computer programs
connectivity
conservation planning
Decision analysis
Decision making
Decision trees
Environmental protection
Geographic information systems
habitat representation
Integrated approach
Integrated software
Land management
Land use
Land use management
Land use planning
Modelling
Mountains
Multiple criterion
Software
South Africa
User interface
Wildlife conservation
Zonation
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Title A Transparent and Intuitive Modeling Framework and Software for Efficient Land Allocation
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