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The Method of Fuzzy Logic and Data Mining for Monitoring Troposphere Parameters Using Ground-Based Radiometric Complex

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Intelligent Distributed Computing XIII (IDC 2019)

Part of the book series: Studies in Computational Intelligence ((SCI,volume 868))

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Abstract

The paper presents an algorithm for processing data obtained with the help of ground-based water vapor radiometer (WVR) under conditions of intense precipitation. Fuzzy logic technology and method of singular spectrum analysis were used for realization of this algorithm. Data mining is used to support the choice of the most relevant variables for membership functions of fuzzy logic and inference rules. The selected variables are used as inputs to a fuzzy logic system designed to filter the signal from noise in a quasi-real time scale and predict data during exposure to intensive precipitation. The results of computer modelling of the algorithm demonstrating its good accuracy are presented. The results of comparing integral water vapor content obtained with WVR and Global Navigation Satellite System (GNSS) are discussed.

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References

  1. Animesh, M., Chakraborty, R.: Prediction of rain occurrence and accumulation using multifrequency radiometric observations. IEEE Trans. Geosci. Remote Sens. PP(99), pp. 1–9 (2018). https://doi.org/10.1109/TGRS.2017.2783848

    Article  Google Scholar 

  2. Ilyin, G.N., Troitsky, A.V.: Determining the tropospheric delay of a radio signal by the radiometric method. Radiophys. Quantum Electron. 60(4), 291–299 (2017). https://doi.org/10.1007/s11141-017-9799-6

    Article  Google Scholar 

  3. Arsaev, I.E., Bykov, V.Y., Ilin, G.N., Yurchuk, E.F.: Water vapor radiometer: measuring instrument of atmospheric brightness temperature. Meas. Technol. 60(5), 497–504 (2017). https://doi.org/10.1007/s11018-017-1224-1

    Article  Google Scholar 

  4. Drozhzhov, K.A., Ivanov, S.I., Ilin, G.N.: Adaptive data processing of a ground-based radiometric complex for remote sensing of tropospheric parameters. In: 2017 IEEE II International Conference on Control in Technical Systems (CTS) – Proceedings, 25–27 October 2017, St.-Peterburg, Russia pp. 297–300 (2017). https://doi.org/10.1109/CTSYS.2017.8109550

  5. IAA RAS (2017). http://iaaras.ru/en/. Accessed 05 Apr 2018

  6. NPO: ATTEKH (2017). http://attex.net/RU/index.php. Accessed 05 Apr 2018

  7. NPO: Typhoon (2017). http://www.rpatyphoon.ru/product/devices/meteo/mk-15/. Accessed 05 Apr 2018

  8. Drozhzhov, K.A. Ivanov, S.I.: The research and implementation of processing algorithm for a non-stationary signal with input sampled-data missing and intense impulse noise. In: 2018 IEEE Conference of Russian Young Researchers in Electrical and Electronic Engineering (EIConRus) – Proceedings, 29 January–1 February 2018, Moscow, Russia pp. 1071–1074 (2018). https://doi.org/10.1109/EIConRus.2018.8317275

  9. Ponce-Cruz, P., Ramírez-Figueroa, F.D.: Intelligent Control Systems with LabVIEW\(^{\rm TM}\), 216 p. Springer-Verlag London Limited (2010)

    Google Scholar 

  10. Mendel, J.M., Tan, W.-W., Hagras, H., Melek, W.W., Hao Y.: Introduction to Type-2 Fuzzy Logic Control: Theory and Applications, 356 p. Wiley, Hoboken (2014)

    Book  Google Scholar 

  11. Golyandina, N., Nekrutkin, V., Zhigljavsky, A.: Analysis of Time Series Structure, 310 p. Chapman & Hall/CRC, Roca Raton (2003)

    Google Scholar 

  12. Golyandina, N., Zhigljavsky, A.: Singular Spectrum Analysis for Time Series, 119 p. Springer, Heidelberg (2013)

    Chapter  Google Scholar 

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Correspondence to S. I. Ivanov .

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Ivanov, S.I., Ilin, G.N. (2020). The Method of Fuzzy Logic and Data Mining for Monitoring Troposphere Parameters Using Ground-Based Radiometric Complex. In: Kotenko, I., Badica, C., Desnitsky, V., El Baz, D., Ivanovic, M. (eds) Intelligent Distributed Computing XIII. IDC 2019. Studies in Computational Intelligence, vol 868. Springer, Cham. https://doi.org/10.1007/978-3-030-32258-8_13

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