10.24425/aoa.2024.148802
Virtual Reality Technology in Analysis of the Sarek National Park Soundscape in Sweden
References
Aletta F., Kang J., Axelsson O. (2016), Soundscape descriptors and a conceptual framework for developing predictive soundscape models, Landscape Urban Planning, 149: 65–74, doi: 10.1016/j.landurbplan.2016.02.001.
Aletta F., Guattari C., Evangelisti L., Asdrubali F., Oberman T., Kang J. (2019), Exploring the compatibility of “Method A” and “Method B” data collection protocols reported in the ISO/TS 12913-2:2018 for urban soundscape via a soundwalk, Applied Acoustics, 155: 190–203, doi: 10.1016/j.apacoust.2019.05.024.
Axelsson Ö., Nilsson M.E., Berglund B. (2010), A principal components model of soundscape perception, The Journal of the Acoustical Society of America, 128(5): 2836–2846, doi: 10.1121/1.3493436.
Berglund B., Nilsson M.E. (2006), On a tool for measuring soundscape quality in urban residential areas, Acta Acustica united with Acustica, 92(6): 938–944.
Borkowski B., Suder-Debska K., Wiciak J., Szlachta A.M. (2021), Acoustic panels inspired by nature, Archives of Acoustics, 46(1): 135–146, doi: 10.24425/aoa.2021.136567.
Bradfer-Lawrence T., Gardner N., Bunnefeld L., Bunnefeld N., Willis S.G., Dent D.H. (2019), Guidelines for the use of acoustic indices in environmental research, Methods in Ecology and Evolution, 10(1): 1796–1807, doi: 10.1111/2041-210X.13254.
Bernat S. (2013), Awareness of noise hazards and the value of soundscapes in polish national parks, Archives of Acoustics, 38(4): 479–487, doi: 10.2478/aoa-2013-0057.
Brown A.L., Gjestland T., Dubois D. (2015), Acoustic environments and soundscapes, [in:] Soundscape and the Built Environment, Kang J., Schulte-Fortkamp B. [Eds.], pp. 1–16, CRC press.
Czopek D., Małecki P., Piechowicz J., Wiciak J. (2019), Soundscape analysis of selected landforms on Spitsbergen, Archives of Acoustics, 44(3): 511–519, doi: 10.24425/aoa.2019.129266.
Czopek D., Lichon S., Małecki P., Wiciak J. (2022), The Soundscape of the Sarek National Park – Case study, [in:] Proceedings of the 24th International Congress on Acoustics.
Davies W.J. et al. (2013), A Perception of soundscapes: An interdisciplinary approach, Applied Acoustics, 74(2): 224–231, doi: 10.1016/j.apacoust.2012.05.010.
De Coensel B., Botteldooren D. (2006), The quiet rural soundscape and how to characterize it, Acta Acustica United with Acustica, 92: 887–897.
Farina A. (2014), Soundscape Ecology: Principles, Patterns, Methods and Applications, Dordrecht, Springer.
Flowers C., Le Tourneau F-M., Merchant N., Heidorn B., Ferriere R., Harwood J. (2021), Looking for the -scape in the sound: Discriminating soundscapes categories in the Sonoran Desert using indices and clustering, Ecological Indicators, 127: 107805, doi: 10.1016/j.ecolind.2021.107805.
International Organization for Standarization (2014), Acoustics – Soundscape – Part 1: Definition and conceptual framework (ISO Standard No. 12913-1:2014), https://www.iso.org/standard/52161.html.
International Organization for Standarization (2018), Acoustics – Soundscape – Part 2: Data collection and reporting requirements (ISO/TS Standard No. 12913-2:2018), https://www.iso.org/standard/75267.html.
International Organization for Standarization (2019), Acoustics – Soundscape – Part 3: Data analysis (ISO/TS Standard No. 12913-3:2019), https://www.iso.org/standard/69864.html.
Jiang L. et al. (2022), Ten questions concerning soundscape valuation, Building and Enviroment, 2019: 109231, doi: 10.1016/j.buildenv.2022.109231.
Kang J. et al. (2016), Ten questions on the soundscapes of the built environment, Building and Environment, 108: 284–294, doi: 10.1016/j.buildenv.2016.08.011.
Krause B. (2012), The Great Animal Orchestra: Finding the Origins of Music in the World’s Wild Places, New York, Little, Brown and Company.
LaValle S.M. (2019) Virtual Reality, Cambridge University Press.
Mancini S., Mascolo A., Graziuso G., Guarnaccia C. (2021), Soundwalk, questionnaires and noise measurements in a university campus: A soundscape study, Sustainability, 13(2): 841, doi: 10.3390/su13020841.
Małecki P., Czopek D., Piechowicz J., Wiciak J. (2020), Acoustic analysis of the glacier caves in Svalbard, Applied Acoustics, 165: 107300, doi: 10.1016/j.apacoust.2020.107300.
Mitchell A. et al. (2021), The International Soundscape Database: An integrated multimedia database of urban soundscape surveys – Questionnaires with acoustical and contextual information, https://zenodo.org/records/10672568 (access: 15.02.2024).
Mitchell A., Aletta F., Kang J. (2022), How to analyse and represent quantitative soundscape data, JASA Express Letters, 2(3): 037201, doi: 10.1121/10.0009794.
Pieretti N., Farina A., Morri D. (2011), A new methodology to infer the singing activity of an avian community: The acoustic complexity index (ACI), Ecological Indicators, 11(3): 868–873, doi: 10.1016/j.ecolind.2010.11.005.
Rychtáriková M., Vermeir G. (2013), Soundscape categorization on the basis of objective acoustical parameters, Applied Acoustics, 74(2): 240–247, doi: 10.1016/j.apacoust.2011.01.004.
Scarpelli M.D.A., Ribeiro M.C., Teixeira C.P. (2021), What does Atlantic Forest soundscapes can tell us about landscape?, Ecological Indicators, 121: 107050, doi: 10.1016/j.ecolind.2020.107050.
Schafer R.M. (1977), The soundscape: Our Sonic Environment and the Tuning of the World, Destiny Books, Rochester, VT.
Southworth M. (1969), The sonic environment of cities, Environment and Behavior, 1(1): 49–70, doi: 10.1177/001391656900100104.
UNESCO (n.d.), Laponian Area, https://whc.unesco.org/en/list/774/ (access: 21.07.2023).
Wang M. (2020), Social VR: A new form of social communication in the future or a beautiful illusion?, Journal of Physics: Conference Series, 1518: 012032, doi: 10.1088/1742-6596/1518/1/012032.
DOI: 10.24425/aoa.2024.148802