Acknowledgement
본 연구는 2020년도 정부(기상청)의 재원으로 한국기상산업기술원의 "미래수요를 고려한 도시기상 자료 활용 연구"(No. X09-ND04-ND0406) 과제의 지원을 받아 수행된 연구입니다.
References
- Avtar, R., N. Sahu, A. K. Aggarwal, S. Chakraborty, A. Kharrazi, A. P. Yunus, J. Dou, and T. A. Kurniawan, 2019: Exploring renewable energy resources using remote sensing and GIS-A review. Resources, 8, 149, doi:10.3390/resources8030149.
- Basara, J. B., and Coauthors, 2011: The Oklahoma City Micronet. Meteorol. Appl., 18, 252-261, doi:10.1002/met.189.
- Bieringer, P., A. Pina, H. Jonker, D. Lorenzetti, M. Sohn, G. Bieberbach, and R. N. Fry, 2019: An evaluation of the Joint Outdoor-Indoor Urban Large Eddy Simulation (JOULES) atmospheric transport and dispersion (at&d) modeling system. Extended Abstract, 19th International Conference on Harmonisation within Atmospheric Dispersion Modelling for Regulatory Purposes, Bruges, Belgium, H19-063.
- Heus, T., and Coauthors, 2010: Formulation of the Dutch Atmospheric Large-Eddy Simulation (DALES) and overview of its applications. Geosci. Model Dev., 3, 415-444, doi:10.5194/gmd-3-415-2010.
- Hintz, K. S., H. Vedel, E. Kaas, and N. W. Nielsen, 2020: Estimation of wind speed and roughness length using smartphones: Method and quality assessment. J. Atmos. Oceanic Technol., 37, 1319-1332, doi:10.1175/JTECHD-19-0037.1.
- Holden, J., and N. Goel, 2016: Fast-Forwarding to a Future of On-Demand Urban Air Transportation. Uber Elevate, 97 pp [Available online at https://www.uber.com/elevate.pdf].
- Ju, Y.-C., E. Lee, and W. Suh, 2020: An analysis on the smart city research trends. J. Korean Assoc. Reg. Inform. Soc., 23, 149-172, doi:10.22896/karis.2020.23.2.006 (in Korean).
- Kim, M., and S. Jung, 2017: An analysis and classification of technologies applied on smart city services - focused on 3 cities in Korea. Extended Abstract, Architectural Institute of Korea Fall Meeting, 37, AIK, 459-462 (in Korean with English abstract).
- KRIHS, 2018: Geospatial Information Strategies for the Hyper-connected Smart City. Korea Research Institute for Human Settlements Res. Rep. OTKCRK190760, 158 pp (in Korean).
- KMA, 2018: Evaluation of Contribution of Meteorological Observation Data to Weather Forecasts. Korea Meteorological Administration Res. Rep., 240 pp (in Korean).
- KMA, 2021: Smart city high-resolution meteorological analysis-forecasting and development of meteorological-climate convergence technology prototype. Korea Meteorological Administration Res. Rep., in press (in Korean).
- Knox, J. A., and Coauthors, 2013: Tornado debris characteristics and trajectories during the 27 April 2011 super outbreak as determined using social media data. Bull. Amer. Meteor. Soc., 94, 1371-1380, doi:10.1175/BAMS-D-12-00036.1.
- Lac, C., and Coauthors, 2018: Overview of the Meso-NH model version 5.4 and its applications. Geosci. Model Dev., 11, 1929-1969, doi:10.5194/gmd-11-1929-2018.
- Li, W., M. Batty, and M. F. Goodchild, 2020: Real-time GIS for smart cities. Int. J. Geogr. Inf. Sci., 34, 311- 324, doi:10.1080/13658816.2019.1673397.
- Liu, Y., and Coauthors, 2008: The operational mesogamma-scale analysis and forecast system of the U.S. Army Test and Evaluation Command. Part I: Overview of the modeling system, the forecast products, and how the products are used. J. Appl. Meteor. Climatol., 47, 1077-1092. https://doi.org/10.1175/2007JAMC1653.1
- Maronga, B., and Coauthors, 2015: The Parallelized LargeEddy Simulation Model (PALM) version 4.0 for atmospheric and oceanic flows: model formulation, recent developments, and future perspectives. Geosci. Model Dev., 8, 2515-2551, doi:10.5194/gmd-8-2515-2015.
- MOLIT, 2019: A Study on Geographic Information Standardization Strategy to facilitate Smart City Project. Ministry of Land, Infrastructure and Transport, Res. Rep., KOGL 11-1613000-002595-01, 129 pp [Available online at https://www.codil.or.kr/viewDtlConRpt.do?gubun=rpt&pMetaCode=OTKCRK200494] (in Korean).
- Park, K. C., and C. H. Lee, 2019: A study on the research trends for Smart City using topic modeling. J. Internet Comp. Serv., 20, 119-128, doi:10.7472/jksii.2019.20.3.119.
- Sauer, J. A., and D. Munoz-Esparza, 2020: The FastEddy® resident-GPU accelerated large-eddy simulation framework: Model formulation, dynamical-core validation and performance benchmarks. J. Adv. Model. Earth Sy., 12, e2020MS002100, doi:10.1029/2020MS002100.
- Schroeder, A. J., J. B. Basara, and B. G. Illston, 2010: Challenges associated with classifying urban meteorological stations: The Oklahoma City Micronet example. The Open Atmos. Sci. J., 4, 88-100, doi:10.2174/1874282301004010088.
- Silva, B. N., M. Khan, and K. Han, 2018: Towards sustainable smart cities: A review of trends, architectures, components, and open challenges in smart cities. Sustain. Cities Soc., 38, 697-713, doi:10.1016/j.scs.2018. 01.053.
- Subasinghe, I., S. Nittel, M. Cressey, M. Landon, and P. Bajracharya, 2020: Real-time mapping of natural disasters using citizen update streams. Int. J. Geogr. Inf. Sci., 34, 393-421, doi:10.1080/13658816.2019.1639185.
- Turner, W. J. N., O. Kinnane, and B. Basu, 2014: Demandside characterization of the smart city for energy modelling. Energy Proced., 62, 160-169, doi:10.1016/j.egypro.2014.12.377.