Open Access

Accuracy of smartphone applications in the field measurements of tree height


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Andersen H-E., Reutebuch S.E., McGaughey R.J. 2006. A rigorous assessment of tree height measurements obtained using airborne LIDAR and conventional field methods. Canadian Journal of Remote Sensing, 32 (5), 355–366.Search in Google Scholar

Bozic M., Cavlovic J., Lukic N., Teslak K., Kos D. 2005. Efficiency of ultrasonic Vertex III hypsometer compared to the most commonly used hypsometers in Croatian forestry. Croatian Journal of Forest Engineering, 26 (2), 91–99.Search in Google Scholar

Bragg D.C., Frelich L.E., Leverett R.T., Blozan W., Luthringer D.J. 2011. The sine method: an alternative height measurement technique. Research Note SRS-22. Asheville, U.S. Department of Agriculture, Forest Service, Southern Research Station.10.2737/SRS-RN-22Search in Google Scholar

Deskis OU. 2014. Measure Height – decription. Available at https://play.google.com/store/apps/details?id=ee.deskis.android.height&hl=en. Accessed May 15, 2015.Search in Google Scholar

Hammer Ø., Harper D.A.T., Ryan P.D. 2001. PAST: Paleontological statistics software package for education and data analysis. Palaeontologia Electronica, 4 (1).Search in Google Scholar

Han D. 2012. Standing tree volume measurement technology based on digital image processing. In: Proceedings of International Conference on Automatic Control and Artificial Intelligence (ACAI 2012), Xiamen, China, 3–5 March 2012, 1922–1925.Search in Google Scholar

Hemery G. 2011. How to calculate tree height using a smartphone. Available at http://gabrielhemery.com/2011/05/15/how-to-calculate-tree-height-using-a-smartphone. Accessed May 15, 2015.Search in Google Scholar

Hemery G. 2012. Forest mensuration on a smartphone. Available at http://gabrielhemery.com/2012/04/20/forest-mensuration-on-a-smartphone. Accessed May 15, 2015.Search in Google Scholar

Itoh T., Eizawa J., Yano N., Matsue K., Naito K. 2010. Development of Software to Measure Tree Heights on the Smartphone. Journal of the Japanese Forest Society, 92, 221–225. http://dx.doi.org/10.4005/jjfs.92.221Search in Google Scholar

Larjavaara M., Muller-Landau H.C. 2013. Measuring tree height: a quantitative comparison of two common field methods in a moist tropical forest. Methods in Ecology and Evolution, 4, 793–801. doi: 10.1111/2041-210X.1207110.1111/2041-210X.12071Search in Google Scholar

Larsen D.R., Hann D.W., Stearns-Smith S.C. 1987. Accuracy and Precision of the Tangent Method of Measuring Tree Height. WJAF, 2 (1), 26–28.Search in Google Scholar

Lee Y.S., Cho S.B. 2011. Activity recognition using hierarchical hidden Markov models on a smartphone with 3D accelerometer. In: Proceedings of 6th International Conference Hybrid Artificial Intelligent Systems HAIS 2011, Wroclaw, Poland, May 23–25, 2011 (eds.: E. Corchado, M. Kurzyński, M. Woźniak), 460–467.Search in Google Scholar

Smart Tools co. 2014. Smart Tools – description. Available at https://play.google.com/store/apps/details?id=kr.aboy.tools&hl=en. Accessed May 15, 2015.Search in Google Scholar

Stereńczak K., Zasada M. 2011. Accuracy of tree height estimation based on LIDAR data analysis. Folia Forestalia Polonica Series A – Forestry, 53 (2), 123–129.Search in Google Scholar

Villasante A., Fernandez C. 2014. Measurement errors in the use of smartphones as low-cost forestry hypsometers. Silva Fennica, 48 (5), article id 1114.Search in Google Scholar

eISSN:
2199-5907
ISSN:
0071-6677
Language:
English
Publication timeframe:
4 times per year
Journal Subjects:
Life Sciences, Plant Science, Medicine, Veterinary Medicine