Algorithms for estimating the suitability of potential landing sites
Palabras clave:
landing assessment, forest planning, forest operations, forest harvesting, cable yardingResumen
Cable yarding systems are commonly used in steep or difficult terrain and require suitable landing sites. This work describes two algorithms that calculate the suitability of roads and areas for landing site use. The algorithms were tested against real world data. The results show that simple algorithms are sufficient to make stable, useful estimates that are comparable with human site placements. These techniques can be used to guide forest road network planning or reuse of existing roads.Referencias
Akay, A., H. Oğuz, I. Karas, and K. Aruga, 2009. Using lidar technology in forestry activities. Environmental Monitoring and Assessment 151(1-4):117-125. URL http://dx.doi.org/10.1007/s10661-008-0254-1.
Bont, L. G., 2012. Spatially explicit optimization of forest harvest and transportation system layout under steep slope conditions. Ph.D. thesis, ETH.
Bont, L. G., H. R. Heinimann, and R. L. Church, 2012. Concurrent optimization of harvesting and road network layouts under steep terrain. Annals of Operations Research pp. 1-24. URL http://dx.doi.org/10.1007/s10479-012-1273-4.
Chung, W., 2002. Optimization of cable logging layout using a heuristic algorithm for network programming. Ph.D. thesis, Department of Forest Engineering, Oregon State University.
Church, R. L., A. T. Murray, and A. Weintraub, 1998. Locational issues in forest management. Location Science 6(1-4):137 - 153. URL http://www.sciencedirect.com/science/article/pii/S0966834998000515.
Dykstra, D. P., and J. L. Riggs, 1977. An application of facilities location theory to the design of forest harvesting areas. A I I E Transactions 9(3):270-277. URL http://www.tandfonline.com/doi/abs/10.1080/05695557708975155.
Epstein, R., A. Weintraub, P. Sapunar, E. Nieto, J. B. Sessions, J. Sessions, F. Bustamante, and H. Musante, 2006. A combinatorial heuristic approach for solving real-size machinery location and road design problems in forestry planning. Operations Research 54(6):1017-1027. URL http://dx.doi.org/10.1287/opre.1060.0331.
Epstein, R., A. Weintraub, J. Sessions, B. Sessions, P. Sapunar, E. Nieto, F. Bustamante, and H. Musante, 2001. Planex: A system to identify landing locations and access. In Proc. of the International Mountain Logging and 11th Pacific Northwest Skyline Symp. P. Schiess and F. Krogstad [Eds.]. December, pp. 10-12.
Heinimann, H., 1998. A computer model to differentiate skidder and cable-yarder based road network concepts on steep slopes. Journal of Forest Research 3(1):1-9. URL http://dx.doi.org/10.1007/BF02760286.
Martell, D. L., E. A. Gunn, and A. Weintraub, 1998. Forest management challenges for operational researchers. European Journal of Operational Research 104(1):1 - 17. URL http://www.sciencedirect.com/science/article/pii/S0377221797003299.
Stückelberger, J. A., 2008. A weighted-graph optimization approach for automatic location of forest road networks. Ph.D. thesis, ETH Zurich.
Descargas
Publicado
Número
Sección
Licencia
Authors who publish with this journal agree to the following terms:- Authors grant the journal right of first publication, with the work simultaneously licensed under a Creative Commons Attribution License that allows others to share the work with an acknowledgement of the work's authorship and initial publication in this journal.
- Authors are able to enter into separate, additional contractual arrangements for the non-exclusive distribution of the journal's published version of the work (e.g., post it to an institutional repository or publish it in a book), with an acknowledgement of its initial publication in this journal.
- Authors are permitted and encouraged to post their work online (e.g., in institutional repositories or on their website) following the publication by the journal, as it can lead to productive exchanges, as well as earlier and greater citation of published work (See The Effect of Open Access).