A comparative study of auroral morphology distribution between the Northern and Southern Hemisphere based on automatic classification
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Published:2018-03-20
Issue:1
Volume:7
Page:113-122
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ISSN:2193-0864
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Container-title:Geoscientific Instrumentation, Methods and Data Systems
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language:en
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Short-container-title:Geosci. Instrum. Method. Data Syst.
Author:
Yang Qiuju, Hu Ze-JunORCID
Abstract
Abstract. Aurora is a very important geophysical phenomenon in the high
latitudes of Arctic and Antarctic regions, and it is important to make a
comparative study of the auroral morphology between the two hemispheres.
Based on the morphological characteristics of the four labeled dayside
discrete auroral types (auroral arc, drapery corona, radial corona
and hot-spot aurora) on the 8001 dayside auroral images at the Chinese Arctic Yellow
River Station in 2003, and by extracting the local binary pattern (LBP)
features and using a k-nearest classifier, this paper performs an automatic
classification of the 65 361 auroral images of the Chinese Arctic Yellow River
Station during 2004–2009 and the 39 335 auroral images of the South Pole
Station between 2003 and 2005. Finally, it obtains the occurrence distribution of
the dayside auroral morphology in the Northern and Southern Hemisphere. The
statistical results indicate that the four dayside discrete auroral types
present a similar occurrence distribution between the two stations. To the best
of our knowledge, we are the first to report statistical comparative
results of dayside auroral morphology distribution between the Northern and
Southern Hemisphere.
Funder
National Natural Science Foundation of China
Publisher
Copernicus GmbH
Subject
Atmospheric Science,Geology,Oceanography
Reference36 articles.
1. Akasofu, S. I. and Kan, J. R.: Dayside and nightside auroral arc systems, Geophys.
Res. Lett., 7, 753–756, 1980. 2. Chaston, C. C., Carlson, C. W., McFadden, J. P., Ergun, R. E., and Strangeway, R. J.: How
important are dispersive Alfvén waves for auroral particle
acceleration?, Geophys. Res. Lett., 34, L07101, https://doi.org/10.1029/2006GL029144, 2007. 3. Ebihara, Y., Tanaka, Y.-M., Takasaki, S., Weatherwax, A. T., and Taguchi, M.:
Quasi-stationary auroral patches observed at the South Pole Station, J.
Geophys. Res., 112, A01201, https://doi.org/10.1029/2006JA012087, 2007. 4. Han, D. S., Chen, X., Liu, J., Qiu, Q., Keika, K., Hu, Z. J., Liu, J. M., Hu, H. Q., and Yang, H. G.:
An extensive survey of dayside diffuse aurora based on optical observations
at Yellow River Station, J. Geophys. Res.-Space Phys., 120, 7447–7465,
2015. 5. Han, D. S., Nishimura, Y., Lyons, L. R., Hu, H. Q., and Yang, H. G.: Throat aurora: The
ionospheric signature of magnetosheath particles penetrating into the
magnetosphere, Geophys. Res. Lett., 43, 1819–1827, https://doi.org/10.1002/2016GL068181, 2016.
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