Difference between revisions of "SADPOF"

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== General System description ==
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{{DSS, Wiki quality control
 
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|Has flag=N/A
System name: Sistema de Apoio à Decisão em Planeamento Operacional Florestal
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}}
 
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{{DSS, Name, responsible organisation and contact person
Acronym: SADPOF
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|Has name=Sistema de Apoio à Decisão em Planeamento Operacional Florestal
 
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|Has acronym=SADPOF
=== Brief overview ===
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|Has wiki contact person=Alexandra Marques
Web based application for optimized forest operational planning. Currently solves the harvest scheduling integrated with wood logs and biomass assortment and assignment, under the scope of an integrated pulp and paper company.
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|Has wiki contact e-mail=asfmarques78@gmail.com
 
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}}
[[Category:Help documents]]
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{{DSS, Software identification
 
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|Has software=SADPOF.Software identification
__TOC__
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}}
 
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{{DSS, Description
=== Scope of the system ===
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|Has description=Web based application for optimized forest operational planning (FOP). Currently solves harvest scheduling integrated with eucalyptus (Eucalyptus globulus, Labill) wood logs and biomass assortment and assignment, under the scope of an integrated pulp and paper company.
* tool encourages decision maker to discover new problems or opportunities by exposing to new information or results
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|Has modelling scope=Forest indicators
* tool allows forest practitioners to simulate alternative management scenarios and provides proper economical and ecological scenario evaluation indicators for further scenario comparison
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|Has temporal scale=Medium term (tactical), Short term (operational)
 
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|Has spatial context=Spatial with no neighbourhood interrelations
=== System origin ===
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|Has spatial scale=Forest level, Regional/national level
* Who and when was it developed
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|Has objectives dimension=Multiple objectives
* how was it developed
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|Has goods and services dimension=Market non-wood products, Market wood products
* is it a commercial product
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|Has forest management goal=forest fuel harvesting
* does it have real-life application cases
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|supports tree species=Eucalyptus globulus
 
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|supports silvicultural regime=uneven-aged/plantation
=== Support for specific issues  ===
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|Has decision making dimension=Single decision maker
Is the system designed to take into account specific uses? E.g. guidance on ways to characterize biodiversity, economic-biodiversity tradeoff analysis methods, risk assessment methods, landscape analysis methods, timber harvest effects, climate change effects, biological effects (pests, pathogens, invasives), fire,...
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}}
 
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{{DSS, Concrete application
=== Support for specific thematic areas of a problem type  ===
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|Has typical use case=harvest scheduling, wood supply plan
* Silvicultural
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|Has user profile=Non-industrial private owners
* Certification
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|Has country=Portugal
* Conservation
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|Has number of users=0
* Restoration
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|Has number of real-life applications=0
* Transportation
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|Has utilisation in education=presentation/demo
* Development choices / land use zoning
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|Has tool dissemination=Videos, scientific articles, communications on research and tecnhical events
* Policy/intervention alternatives
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}}
* Sustainability impact assessment (SIA)
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{{DSS, Decision support techniques used in the DSS
 
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|Has decision support techniques=SADPOF.Decision support techniques used in the DSS
=== Capability to support decision making phases  ===
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}}
''(NOTE I do not quite know what to do with this, as I do not understand it myself, although it seems related to system use)''
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{{DSS, Support of Knowledge Management
 
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|Has knowledge management processes=SADPOF.Support of Knowledge Management
(Click [[Simon's decision making model|here]] to see a more detailed explanation)
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}}
* Intelligence (+ explicit description of the support given by the DSS)
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{{DSS, Support of social participation
* Design (+ explicit description of the support given by the DSS)
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|Has support for social participation=SADPOF.Support of social participation
* Choice (+ explicit description of the support given by the DSS)
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}}
* Monitor (+ explicit description of the support given by the DSS)
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{{DSS, DSS development
 
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|Has DSS development=SADPOF.DSS development
=== Related systems  ===
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}}
Describe (and/or link to) other systems related
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{{DSS, Documentation
 
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|Has website=http://www.link.pt/upl/%7B0757b300-68df-4497-b85a-b4bb3926396a%7D.pdf
== Data and data models ==
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|Has reference=Marques AF, Borges JG, Sousa P, Gonçalves L, Diaz E, Moura P, Ferrinho M. 2011. Integrating harvest scheduling and timber assortment and assignment planning processes. An application to forest tactical planning by a pulpwood company in Portugal. Forest Science (prep); Marques AF, Borges JG, Sousa P, Fonseca M, Garcia R, Batista G. 2010. Applying enterprise architecture to the design of the integrated forest products supply chain management system. In: Varajão, Cunha M. (Eds.) Proceedings of the CENTERIS2010 Conference, Part II, CCIS 110, Springer-Verlag Berlin Heidelberg 2010, pp. 32-40.
 
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}}
=== Typical spatial extent of application ===
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Define the scale of use for the application (user defined, regional, multi-owner forest single ownership forest, Multiple scale interaction)
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=== Forest data input  ===
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Describe the basic forest input (forest level, stand level, or individual tree level), and appropriate meta-data, such as data provenance (Areal coverage, Sample of plots, stands, Contiguous forest cover). GIS information is to be considered here, namely include cover tyes and type of information (raster or vectorial, necessity of topological information)  If necessary describe surrogate sources of information
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If necessary describe other types of required data (economic, social)
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=== Type of information input from user (via GUI) ===
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Describe what is the information that the user directly inputs in the system if any): expert knowledge, opinion, goals and production objectives, preferences, stand/site information....
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== Models ==
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=== Forest models ===
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Growth, Yield, Carbon, Wood quality, biodiversity and habitat suitability, environmental and external effects (fire, storms, pests, diseases, climate change, etc)
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=== Social models  ===
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historical and cultural values of sites, values due to peace and quiet, esthetic values, values due to recreational activities, ethical values): E. g. Recreation, Health, Game
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== Decision Support ==
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=== Definition of management interventions ===
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Define what is available for the manager to intervene in the forest: time of harvest, plantations, thinnings, reconversions...
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Existence of prescription writer, simple enumeration of all possibilities, scenario simulation , etc.
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=== Typical temporal scale of application ===
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Define the temporal scale of the application: E.g., operational and immediate level, Tactical planning (short term) and strategic level.
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=== Types of decisions supported  ===
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*Management level
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**strategic decisions
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**administrative decisions
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**operating control decisions
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* Management function
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* planning decisions
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**organizing decisions
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**command decisions
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**control decisions
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** coordination decisions
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*decision making situation
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**unilateral
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** collegial
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**Bargaining / participative decision making
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=== Decision-making processes and models ===
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*Logic modeling
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*Operations research modeling
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**Direct approaches
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**Heuristic manipulation of simulation models
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*Business modeling
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*Simulation (with and without stochasticity)
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*Multiple criteria/ranking
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*Other
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== Output ==
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=== Types of outputs ===
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Types of outputs produced (tables, maps, 3-D visualizations, pre-programmed summaries, etc)
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=== Spatial analysis capabilities  ===
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* integrated capabilities
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* facilitates links to GIS (wizards, etc.)
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* provides standard data import/export formats
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* allows spatial analysis (e.g. topology overlays (e.g. multi layering of different maps, selection of objects based on selection criteria, aggregation by attributes (e.g. areas of similar characteristics), Linking by logical means, Statistics by area, analysis with digital terrain model)
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=== Abilities to address interdisciplinary, multi-scaled, and political issues  ===
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Evaluate interactions between different basic information types (biophysical, economic, social). Produce coordinated results for decision makers operating at different spatial scales facilitate social negotiation and learning
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== System ==
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=== System requirements  ===
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* Operating Systems: (Windows, Macintosh, Linux/UNIX, Web-based, Others)
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* Other software needed (GIS, MIP packages, etc...) 
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* Development status
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=== Architecture and major DSS components ===
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Describe the basic architecture of the system in software and hardware. Desktop client-server, web based, as well as the  integration with available systems. Basic data flow, focusing on retrieval of required input and propagation and implementations of decisions. Mention its modular and scalability capabilities.
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=== Usage ===
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Describe the level of use: Research level use, Industry use, Government use
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=== Computational limitations ===
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Describe the system limitations: e.g. number of management units, number of vehicles, time horizon
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=== User interface ===
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Describe the quality of user interface and the Prerequisite knowledge for using the system
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=== Documentation and support ===
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Describe the connection to Help-system and possibilities for assistance, as well as the required training and user support levels
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=== Installation ===
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* Prerequisite knowledge: Level of effort to become functional
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* Cost: (purchase price, development costs, demonstrated return on investment, cost of use, training costs, licence and maintenance costs)
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* Demo: allows the download/utilization of a trial version. If yes, where is it available and what are the trial conditions.
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==References==
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===Cited references===
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<references/>
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===External resources===
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Latest revision as of 16:05, 3 April 2013

Wiki quality control

Has flag N/A

Name, responsible organisation and contact person

Has full name
Has acronym SADPOF
Has wiki contact person Alexandra Marques
Has wiki contact e-mail asfmarques78@gmail.com

Software identification

Has software SADPOF.Software identification

Description

Has description Web based application for optimized forest operational planning (FOP). Currently solves harvest scheduling integrated with eucalyptus (Eucalyptus globulus, Labill) wood logs and biomass assortment and assignment, under the scope of an integrated pulp and paper company.
Has modelling scope Forest indicators
Has temporal scale Medium term (tactical), Short term (operational)
Has spatial context Spatial with no neighbourhood interrelations
Has spatial scale Forest level, Regional/national level
Has objectives dimension Multiple objectives
Has related DSS
Has goods and services dimension Market non-wood products, Market wood products
Has decision making dimension Single decision maker
Has forest management goal forest fuel harvesting
Supports tree species
Supports silvicultural regime

Concrete application

Has typical use case harvest scheduling, wood supply plan
Has user profile Non-industrial private owners
Has country Portugal
Has references about examples of application
Has number of users 0
Has number of real-life applications 0
Has utilisation in education presentation/demo
Has research project reference
Has tool dissemination Videos, scientific articles, communications on research and tecnhical events

Decision support techniques used in the DSS

Has decision support techniques SADPOF.Decision support techniques used in the DSS

Support of Knowledge Management

Has knowledge management processes SADPOF.Support of Knowledge Management

Support of social participation

Has support for social participation SADPOF.Support of social participation

DSS development

Has DSS development SADPOF.DSS development

Documentation

Has website http://www.link.pt/upl/%7B0757b300-68df-4497-b85a-b4bb3926396a%7D.pdf
Has online demo
Has manual
Has technical documentation
Has reference Marques AF, Borges JG, Sousa P, Gonçalves L, Diaz E, Moura P, Ferrinho M. 2011. Integrating harvest scheduling and timber assortment and assignment planning processes. An application to forest tactical planning by a pulpwood company in Portugal. Forest Science (prep); Marques AF, Borges JG, Sousa P, Fonseca M, Garcia R, Batista G. 2010. Applying enterprise architecture to the design of the integrated forest products supply chain management system. In: Varajão, Cunha M. (Eds.) Proceedings of the CENTERIS2010 Conference, Part II, CCIS 110, Springer-Verlag Berlin Heidelberg 2010, pp. 32-40.