Skip to main content
Have a personal or library account? Click to login
Two Strategies Of Agent-Based Modelling Application For Management Of Lakeland Landscapes At A Regional Scale Cover

Two Strategies Of Agent-Based Modelling Application For Management Of Lakeland Landscapes At A Regional Scale

Open Access
|Dec 2015

References

  1. Bajkiewicz-Grabowska E., 2008. Lake geoecosystem as an indicator of the rate of natural eutrophication of water reservoirs.8(1–2): 9–12.
  2. Berger T., 2001. Agent-based spatial models applied to agriculture: a simulation tool for technology diffusion, resource use changes and policy analysis.25(2–3): 245–260.
  3. Bremigan M.T., Soranno P.A., Gonzalez M.J., Bunnell D.B., Arend, K.K., Renwick, W.H., Stein, R.A., Vanni, M.J., 2008. Hydrogeomorphic features mediate the effects of land use/cover on reservoir productivity and food webs.53(4): 1420–1433.
  4. Brown D.G., 2006. Agent-Based Models. In: H. Geist (ed.),. Greenwood Publishing Group, Westport: 7–13.
  5. Cheruvelil K.S., Soranno P.A., Bremigan M.T., Wagner T., Martin S.L., 2008. Grouping lakes for water quality assessment and monitoring: The roles of regionalization and spatial scale.41(3): 425–440.
  6. Conte R., Hegselmann R., Terna P., 1997.Springer-Verlag, Berlin.
  7. Couclelis H., 1987. Of mice and men: what rodent populations can teach us about complex spatial dynamics.A 20: 99–109.
  8. Dzieszko P., 2014. Land-cover modelling using CORINE Land Cover data and multi-layer perceptron.33(1): 5–22.
  9. Dzieszko P., Bartkowiak K., Giełda-Pinas K., 2013. Agenci w modelowaniu agentowym (ABM).4(61): 17–23.
  10. Eastman J.R., 2012.. Clark University, Worcester, pp. 324.
  11. EEA [European Environment Agency], 2006..; accessed 12 December 2014.
  12. Epstein J.M., 2008. Why Model?Vol. 11, No. 4: 12.
  13. Epstein J.M., Axtell, R., 1996.. Brookings Institution Press, Washington DC.
  14. Ferench B., Dawidek J., 2010. Spatial variation of basin supply as a factor of water quality in a shallow, flow-through lake.10(3–4): 127–132.
  15. Foley J.A., DeFries R., Anser G.P., Barford C., Bonann G., Carpenter S.R., Chapin F.S., Coe M.T., Daily G.C., Gibbs H.K. 2005. Global consequences of land use.309(5734): 570–574.
  16. Giełda-Pinas K. 2012. Waloryzacja przyrodnicza krajobrazu Pojezierza Gnieźnieńskiego.33: 77–85.
  17. Giełda-Pinas K., 2015. Symulacje zmian pokrycia terenu i użytkowania ziemi z wykorzystaniem modelowania agentowego.XIII 1(61): 7–19.
  18. Giełda-Pinas K., Ligmann-Zielińska A., Zwolinski Z., 2015 (in press). Spatio-temporal changes of land use and land cover simulated by agent-based modelling, Gniezno Lakeland District, Poland.15
  19. Goodchild M.F., 2005. GIS, Spatial Analysis, and Modelling Overview. In: D.J. Maguire, M. Batty, M.F. Goodchild (eds),. ESRI Press, Redlands: 1–18.
  20. GUS [Główny Urząd Statystyczny], 2015.. Online:; accessed 15 May 2015.
  21. Hillbricht-Ilkowska A., 2005. Ochrona jezior i krajobrazu pojeziernego – problemy, procesy, perspektywy, Funkcje regionalne i problemy badawcze krajobrazu pojeziernego.54(2–3): 285–302.
  22. IMGW [Instytut Meteorologii i Gospodarki Wodnej], 2007.. Zakład Hydrografii i Morfologii Koryt Rzecznych, Instytut Meteorologii i Gospodarki Wodnej, Ministerstwo Środowiska, Narodowy Fundusz Ochrony Środowiska i Gospodarki Wodnej, Warszawa.
  23. Itami R.M., 1994. Simulating spatial dynamics: cellular automata theory.30: 27–47.
  24. Janssen M.A., Jager W., 2000. The human actor in ecological economic models.35(30): 307–310.
  25. Johnson L.B., Richards C., Host G.E., Arthur J.W., 1997. Landscape influences on water chemistry in Midwestern stream ecosystems.37: 193–208.
  26. Jones J.R., Knowlton M.F., Obrecht D.V, Cook E.A., 2004. Importance of landscape variables and morphology on nutrients in Missouri reservoirs.61: 1503–1512.
  27. Keitt T.H., Urban D.L., Milne B.T., 1997. Detecting critical scales in fragmented landscapes.1(1): 4.
  28. Kostrzewski A., 2008. Present state and functioning of lake geoecosystems – methodological and methodical assumptions.8(1–2): 5–8.
  29. Langran G., 1992.. Taylor and Francis, London.
  30. Ligmann-Zielinska A., 2009. The impact of risk-taking attitudes on a land use pattern: an agent-based model of residential development.4(4): 215–232.
  31. Ligtenberg A., Wachowicz M., Bregt A.K., Beulens A., Kettenis D.L., 2004. A design and application of a multi-agent system for simulation of multi-actor spatial planning.72(1): 43–55.
  32. Matthews R. B., Gilbert N.G., Roach A., Polhill J.G., Gotts N.M., 2007. Agent-based land-use models: a review of applications.22(10): 1447–1459.
  33. Monticino M., Acevedo M., Callicott B., Cogdill T., Lindquist C. 2007. Coupled human and natural systems: A multi-agent-based approach.22(5), 656–663.
  34. Myers D., 2001. Introduction to the Symposium: Putting the Future in Planning.67: 365–367.
  35. Parker D.C., Manson S.M., Janssen M.A., Hoffman M.J., Deadman P., 2003. Multi-Agent Systems for the Simulation of Land-Cover Change: A Review.93(2): 314–337.
  36. Peuquet D.J., 2005. Time in GIS and Geographical Databases. In: P.A. Longley, M.F. Goodchild, D.J.Maguire, D.W. Rhind (eds),. Wiley, Hoboken, 91–103.
  37. Ptak M., Ławniczak A.E., 2011. Changes in land use in the buffer zone of lake of the Mała Wełna catchment.12(1): 35–44.
  38. Slager K., Ligtenberg A., de Vries B., de Waard R., 2007. Simlandscape: serious gaming in participatory spatial planning. 10th AGILE International Conference on Geographic Information Science, Aalborg University, Denmark.
  39. Soranno P.A., Cheruvelil K.S., Webster K.E., Bremigan M.T., Wagner T., Stow C., 2010. Using landscape limnology to classify freshwater ecosystems for multi-ecosystem management and conservation.60(6): 440–454.
  40. Soranno P.A., Hubler S.L., Carpenter S.R., Lathrop R.C., 1996. Phosphorus loads to surface waters: a simple model to account for spatial pattern of land use.6(3): 865–878.
  41. Soranno, P.A., Webster K.E., Cheruvelil K.S., Bremigan M.T, 2009. The lake landscape-context framework: linking aquatic connections, terrestrial features and human effects at multiple spatial scales.30(5): 695–700.
  42. Strayer D.L., Beighley R.E., Thompson L.C., Brooks S., Nilsson C., Pinay G., Naiman R.J., 2003. Effects of land cover on stream ecosystems: Roles of empirical models and scaling issues.6: 407–423.
  43. Szpikowski J., 2003. The mechanism of overland flow and wash on slopes in agricultural use on the upper Parsęta catchment. In: A. Kostrzewski, J. Szpikowski (eds). Bogucki Wyd. Nauk., Poznań: 261–277.
  44. Valbuena D., Verburg P.H., Bregt A.K., Ligtenberg A. 2010. An agent-based approach to model land-use change at a regional scale.25(2): 185–199.
  45. Waard R.S., 2005.. PhD-thesis, Technical University Eindhoven.
  46. Walsh S.E., Soranno, P.A., Rutledge, D.T., 2003. Lakes, Wetlands, and Streams as Predictors of Land Use/Cover Distribution.31(2): 198–214.
  47. Weiss G., 1999.. MA: MIT Press, Cambridge.
  48. Zwoliński Zb., 1998. Geoindykatory w badaniach współczesnej dynamiki geosystemów. In: K. Pękala (ed.),Lublin: 223–227.
DOI: https://doi.org/10.1515/quageo-2015-0031 | Journal eISSN: 2081-6383 | Journal ISSN: 2082-2103 (formerly 0137-477X)
Language: English
Page range: 33 - 50
Submitted on: Jun 30, 2015
Published on: Dec 30, 2015
Published by: Adam Mickiewicz University
In partnership with: Paradigm Publishing Services
Related subjects:

© 2015 Katarzyna Giełda-Pinas, Piotr Dzieszko, Zbigniew Zwoliński, Arika Ligmann-Zielińska, published by Adam Mickiewicz University
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.