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Artykuły w czasopismach na temat "Radio refractivity"

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VENKATRAMAN, SQN LDR C. N. "Radio climatology of Gauhati." MAUSAM 23, no. 4 (2022): 537–42. http://dx.doi.org/10.54302/mausam.v23i4.5316.

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An attempt has been made to study the pattern of radio refractivity of air over Gauhati from the surface to the 700.mb level. It is noticed that the variations in the surface values of refractivity do not reflect and are not correlated with the changes in the, ertioal profile of refractivity. Fluctuations in refractivity are not always the highest at the surface, stoadily decreasing upwards. Ideas about models of refractivity derived from studies in the temperate countries need to be modified before they can find application in tropical countries like India. The occurrence of super-refraction
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Kirschenstein, Małgorzata, and Kamil Krasuski. "Designation of the Troposphere Radio Refractivity for the Area of the Military Aerodrome in Dęblin." Journal of KONBiN 49, no. 3 (2019): 137–58. http://dx.doi.org/10.2478/jok-2019-0054.

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Abstract The radio refractivity is one of major parameters in troposphere monitoring over a selected military aerodrome. The paper makes an in-depth analysis and description of the results of radio refractivity of the troposphere zone. The radio refractivity of the troposphere zone was estimated for the area of the military aerodrome EPDE in Dęblin, Poland. The radio refractivity of the troposphere zone was calculated using empirical troposphere models for the GNSS satellite technique as well as real meteorological data from the SYNOP message. In the paper, the authors demonstrate the results
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Sa’adu, L., Bawa, M., and Bello, M. "A Review on the Effects of Radio Refractivity and Atmospheric Parameters on Signal Quality at Ultra High Frequency (UHF)." International Journal of Science for Global Sustainability 6, no. 2 (2020): 9. http://dx.doi.org/10.57233/ijsgs.v6i2.112.

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Refractivity is an important factor in predicting the performance of radio link. The structures of the refractive index of the troposphere are responsible for many complicated mechanisms such as, multipath effects, absorption, scattering of radio signals, etc. and these mechanisms can cause a lot of propagation impairment such as, loss of signal for mobile communication, the accuracy of tracking radio source (such as stars) with radio telescopes, radar system etc. Understanding the effects of the weather on radio wave propagation will help to improve the quality of radio signals, as the Weathe
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Familusi, T. O., T. Ewetumo, K. D. Adedayo, and J. S. Ojo. "Assessment of Radio Refractivity and Frequency Modulated Radio Signal Strength Variability with Time in Broadcasting System using Osun State Broadcasting Cooperation (OSBC), FM 104.5 MHz as a Reference Station." International Journal of Innovative Science and Research Technology 7, no. 4 (2022): 1479–89. https://doi.org/10.5281/zenodo.6655115.

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Radio Refractivity and frequency modulated radio signal strength were simultaneously synchronized through a self-developed frequency modulated radio signal Strength (FMRSS) and radio refractivity (RF) Meter to acquire data for this research work. The meter was tuned to Osun State Broadcasting Cooperation (OSBC) at FM 104.5 MHz to acquire data over period of 66 days from 23/11/2021 to 05/12/2021, 17/12/2021to 31/12/2021 and 01/01/2022 to 05/02/2022 respectively. The data were processed and the result viewed to infer the relationship between radio refractivity and frequency modulated radio signa
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Sabiru, Aminu Yar`adua, Akinbolati Akinsanmi, and Florence N. Ikechiamaka. "Temporal Analysis of Radio Refractivity Variation over Kaduna: Implications for Radio Wave Communication Systems." UMYU Scientifica 4, no. 2 (2025): 100–108. https://doi.org/10.56919/usci.2542.012.

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Study’s Excerpt:• Refractivity in Nigeria’s savannah is stable yearly (±13 N) but swings monthly (112 N) with wet/dry seasons.• Humidity, not temperature, drives refractivity peaks (391 N) in October rains, setting a new regional record.• ERA5 data is valid for West African refractivity, bridging ground data gaps for climate-based models.• Guides adaptive systems (antenna/power tuning) to boost telecom planning in Nigeria’s savannah zones.• Kaduna’s refractivity aligns with rainforest, not savannah, challenging assumptions on regional propagation.Full Abstract: Surface radio refractivity is a
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Akpootu, D. O., Z. Aminu, I. Nouhou, et al. "Assessment of Tropospheric Radio Refractivity and Its Variation with Climatic Variables Over Zaria, Nigeria." Dutse Journal of Pure and Applied Sciences 10, no. 1b (2024): 243–55. http://dx.doi.org/10.4314/dujopas.v10i1b.25.

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To achieve optimal performances, radio link/system planning and design must take radio refractivity estimation very seriously. This study utilizes measured average daily temperature, relative humidity, and atmospheric pressure for forty-one-year period (1981–2021) obtained from the National Aeronautics and Space Administration (NASA) archives for Zaria (latitude 11.100 N, longitude 7.680 E) strategically located in Nigeria’s midland climate zone to calculate the monthly tropospheric radio refractivity and look into how it varies with other meteorological factors and radio refractive index. The
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Usman, S. L., F. N. Ikechiamaka, A. Akinbolati, J. A. Owolabi, and C. O. Akusu. "Exploring vertical gradients of radio refractivity and their significance for radio wave propagation in Abuja, Jos and Makurdi of North-Central Nigeria." Science World Journal 19, no. 1 (2024): 58–63. http://dx.doi.org/10.4314/swj.v19i1.8.

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Vertical radio refractivity gradients are essential for monitoring propagation conditions when designing and planning terrestrial radio links for communications in the lower atmosphere. Average data gathered from meteorological factors such as temperature, pressure, and relative humidity was used from 1980 to 2020 n this study. This study focuses on the vertical gradient of radio refractivity within the lower atmospheric layer, investigating its influence on factors like signal propagation, route clearance, and line-of-sight communication. The analysis encompasses three cities - Abuja, Makurdi
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D., O. Akpootu. "Performance Analysis of Tropospheric Radio Refractivity on Radio Field Strength and Radio Horizon Distance and Its Variation with Meteorological Parameters over Osogbo, Nigeria." International Journal of Advances in Scientific Research and Engineering (ijasre) 5, no. 10 (2019): 81–92. https://doi.org/10.31695/IJASRE.2019.33545.

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<em>Radio refractivity estimation is paramount in the planning and design of radio link/systems for the purpose of achieving optimal performances. In this study, the monthly average daily atmospheric pressure, relative humidity and temperature data obtained from the National Aeronautics and Space Administration (NASA) during the period of twenty two years (July 1983 &ndash; June 2005) for Osogbo (Latitude </em><em>7.47 <sup>0</sup>N, Longitude 4.29 <sup>0</sup>E, and 302.0 m above sea level</em><em>) were used to estimate the monthly tropospheric radio refractivity and to investigate its varia
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Oyewole, Olayinka J., Christopher Sirola, Anwaoy Pandit, and Samson Ayo. "The Study of Altitudinal Refractivity and Refractivity Gradient Variations by Weather Parameters in Some Selected Locations in Nigeria." Physical Science International Journal 29, no. 3 (2025): 42–49. https://doi.org/10.9734/psij/2025/v29i3882.

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Weather parameters such as pressure, temperature and humidity significantly affect the altitudinal refractivity and refractivity gradients which in return impact the propagation of the radio wave. The alteration in these parameters changes the atmospheric refractive index. Radio refractivity expresses the degree at which a radio signal bends when it travels through the atmosphere. This study examines weather parameters effects on the altitudinal refractivity and refractivity in some selected locations in Nigeria using existing mathematical models relating them with some meteorological paramete
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Bello, Gazali, Davidson Odafe Akpootu, and Salihu Bolaji Sharafa. "Assessment of Tropospheric Radio Refractivity and its Variation with Climatic Variables in the Guinea Savannah Region of Nigeria." European Journal of Theoretical and Applied Sciences 2, no. 3 (2024): 88–104. http://dx.doi.org/10.59324/ejtas.2024.2(3).10.

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In studies involving terrestrial atmospheric electromagnetic propagation, such as point-to-point microwave communication, terrestrial radio, television radio, television broadcast, and mobile communication systems, radio refractivity—the bending of a radio signal as it propagates through media—is crucial. In this study, the seasonal tropospheric radio refractivity was estimated and its variations with other meteorological parameters and refractive index were investigated using the measured monthly climatic data of atmospheric pressure, relative humidity, and temperature obtained from the Natio
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Rozprawy doktorskie na temat "Radio refractivity"

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Bhattacharjea, Rajib. "The effects of atmospheric refractivity in near-earth UHF channels." Diss., Georgia Institute of Technology, 2014. http://hdl.handle.net/1853/53002.

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The design of emergent wireless sensor networks operating near the ground requires channel models that account for previously unconsidered propagation phenomena. Most models used for link planning and radio design of the last century were designed for use in situations where the transmitters were at least tens of meters above the earth surface. However, near the earth surface, the specifics of the ground composition and atmospheric effects have been postulated to play a significant role. This dissertation describes the first set of investigations in this emergent environment. A novel computati
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MacPherson, Douglass A. "Optical and radio frequency refractivity fluctuations from high resolution point sensors sea breezes and other observations." Thesis, Monterey, Calif. : Naval Postgraduate School, 2007. http://bosun.nps.edu/uhtbin/hyperion.exe/07Mar%5FMacPherson.pdf.

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Thesis (M.S. in Meteorology)--Naval Postgraduate School, March 2007.<br>Thesis Advisor(s): Donald L. Walters, Kenneth L. Davidson. "March 2007." Includes bibliographical references (p. 37-38). Also available in print.
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Gaviria, Maldonado Mauricio. "Assessment of the effects of refractive conditions on electronic warfare in central America." Thesis, Monterey, California : Naval Postgraduate School, 1990. http://handle.dtic.mil/100.2/ADA240523.

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Thesis (M.S. in Systems Engineering (Electronic Warfare))--Naval Postgraduate School, September 1990.<br>Thesis Advisor(s): Davidson, Kenneth L. Second Reader: Hershey, Scott H. "September 1990." Description based on title screen as viewed on December 29, 2009. Author(s) subject terms: Retractive conditions, prongation, Central America, radar, microwave. Includes bibliographical references (p. 60-61). Also available in print.
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Aboualmal, Abdulhadi M. A. "Analysis and modelling of the impact of anomalous propagation on terrestrial microwave links in a subtropical region, based on long-term measurements : statistical analysis of long-term meteorological and signal strength measurements in a subtropical region and investigation of the impact of anomalous refractivity profiles on radio propagation in terrestrial microwave wireless systems." Thesis, University of Bradford, 2015. http://hdl.handle.net/10454/14804.

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Prevailing propagation phenomena in certain areas play a vital role in deciding terrestrial wireless systems performance. Vertical refractivity profile below 1 km is a critical parameter for designing reliable systems; noting that there is a shortage of upper-air data worldwide. Anomalous phenomena may cause severe signal fading and interference beyond the horizon. The objectives of this thesis are to investigate dominant refractive conditions in the subtropical Arabian Gulf region, develop new approaches and empirical models for evaluating vertical refractivity profiles and relevant propagati
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Khan, Kamran. "Refractive conditions in Arabian Sea and their effects on ESM and airborne radar operations." Thesis, Monterey, California : Naval Postgraduate School, 1990. http://handle.dtic.mil/100.2/ADA238273.

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Thesis (M.S. in Systems Engineering (Electronic Warfare))--Naval Postgraduate School, September 1990.<br>Thesis Advisor(s): Davidson, Kenneth L. ; Powell, James R. "September 1990." Description based on title screen as viewed on December 29, 2009. DTIC Descriptor(s): Frequency, Electronic Warfare, Aircraft, Airborne, Electronic Equipment, Microwave Equipment, Radar, Profiles, Ducts, Meteorology, Communication And Radio Systems, Refraction, Arabian Sea, Refractometers, Military Operations. DTIC Identifier(s): Radar interference, meteorological phenomena, theses. Author(s) subject terms: Refract
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Nel, Johannes Willem. "Tyd-ruimtelike variasie in radiogolf-refraktiwiteit oor Suidelike Afrika." Thesis, 2014. http://hdl.handle.net/10210/11864.

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M.Sc. (Geography)<br>In this study the spatial and temporal variation of radio-refractivity over southern Africa is investigated. Climatological data from 8 upper-air stations and 49 surface stations were used and transformed. into values of refractivity to establish a data base of radio refractivity information. The spatial analysis yielded maps of surface refractivity (Ns ) and height corrected surface refractivity (No) for southern Africa. In order to calculate the height correction factors, a radio-climatological classification of southern Africa was drawn: up. These maps are a refinement
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Kimball, Andrew R. Zou Xiaolei. "Exploring potential applications of QuikSCAT surface winds and GPS radio occultation data to tropical cyclone initialization and prediction." Diss., 2005. http://etd.lib.fsu.edu/theses/available/etd-07182005-182534.

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Thesis (M.S.)--Florida State University, 2005.<br>Advisor: Dr. Xiaolei Zou, Florida State University, College of Arts and Sciences, Dept. of Meteorology. Title and description from dissertation home page (viewed Sept. 29, 2005). Document formatted into pages; contains xvi, 119 pages. Includes bibliographical references.
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Chang, Kai-Wei, and 張凱威. "The Retrieval of Atmospheric Temperature and Humidity Using Radio Occultation Refractivity and Hyperspectral Infrared Radiances." Thesis, 2013. http://ndltd.ncl.edu.tw/handle/60547538389334406826.

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碩士<br>國立中央大學<br>遙測科技碩士學位學程<br>101<br>Hyperspectral infrared spectrometers and the radio occultation (RO) technique have become crucial for observing the atmosphere, and past studies showed that these two types of observations have complementary characteristics. Temperature retrievals from infrared sounders, such as the Atmospheric InfraRed Sounder (AIRS), tend to have higher error in the upper troposphere. In contrast, radio occultation measurements have a high vertical resolution, are highly accurate for temperature estimates in the upper troposphere and lower stratosphere, and can potentiall
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Anderson, Nathan John. "Effects of the troposphere upon radio communications and implications for weather measurement." Thesis, 2018. http://hdl.handle.net/2440/118192.

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The aim of this research is to use observations of Very High Frequency (VHF) radio wave propagation to estimate the refractive index of air over a propagation path and subsequently the pressure, temperature, and water vapour. This can be accomplished by transmitting a known signal from one spatial location to another, and accurately timing the signal. The research develops methods for accomplishing the required measurements by means of a passive bistatic radar setup with a cooperative target. Such an approach overcomes the timing problems that are normally associated with propagation measureme
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AbouAlmal, A., Raed A. Abd-Alhameed, Steven M. R. Jones, and H. AlAhmad. "New approaches and algorithms for the analysis of vertical refractivity profile below 1 KM in a subtropical region." 2014. http://hdl.handle.net/10454/7632.

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Yes<br>In this paper, 17 years of high resolution surface and radiosonde meteorological data from 1997-2013 for the subtropical Gulf region are analysed. Relationships between the upper air refractivity, Nh, and vertical refractivity gradient, ΔN, in the low troposphere and the commonly available data of surface refractivity, Ns are investigated. A new approach is discussed to estimate Nh and ΔN from the analysis of the dry and wet components of Ns, which gives better results for certain cases. Results are compared with those obtained from existing linear and exponential models in the literatu
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Książki na temat "Radio refractivity"

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1936-, Fritz R. B., and Wave Propagation Laboratory, eds. Observations of spherical-wave scintillation in strong refractive-index turbulence. United States Department of Commerce, National Oceanic and Atmospheric Administration, Environmental Research Laboratories, Wave Propagation Laboratory, 1988.

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Gossard, Earl E. Radar-measured height profiles of Cnp2 sand turbulence dissipation rate compared with radiosonde data during October 1989 at Denver. U.S. Dept. of Commerce, National Oceanic and Atmospheric Administration, Environmental Research Laboratories, Wave Propagation Laboratory, 1990.

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Gossard, Earl E. Radar-measured height profiles of Cn℗ø and turbulence dissipation rate compared with radiosonde data during October 1989 at Denver. U.S. Dept. of Commerce, National Oceanic and Atmospheric Administration, Environmental Research Laboratories, Wave Propagation Laboratory, 1990.

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C, Welsh D., Strauch R. G, and Wave Propagation Laboratory, eds. Radar-measured height profiles of Cn² and turbulence dissipation rate compared with radiosonde data during October 1989 at Denver. U.S. Dept. of Commerce, National Oceanic and Atmospheric Administration, Environmental Research Laboratories, Wave Propagation Laboratory, 1990.

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C, Welsh D., Strauch R. G, and Wave Propagation Laboratory, eds. Radar-measured height profiles of Cn² and turbulence dissipation rate compared with radiosonde data during October 1989 at Denver. U.S. Dept. of Commerce, National Oceanic and Atmospheric Administration, Environmental Research Laboratories, Wave Propagation Laboratory, 1990.

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G, Strauch R., Fairall C. W, and Environmental Technology Laboratory (Environmental Research Laboratories), eds. A calibration for measuring Cn with the NOAA/ETL/AL 915-MHz radar. U.S. Dept. of Commerce, National Oceanic and Atmospheric Administration, Environmental Research Laboratories, Environmental Technology Laboratory, 1994.

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G, Strauch R., Fairall C. W, and Environmental Technology Laboratory (Environmental Research Laboratories), eds. A calibration for measuring Cn with the NOAA/ETL/AL 915-MHz radar. U.S. Dept. of Commerce, National Oceanic and Atmospheric Administration, Environmental Research Laboratories, Environmental Technology Laboratory, 1994.

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United States. National Environmental Satellite, Data, and Information Service., ed. A Spectral approach to the forward problem in GPS radio occultation remote sensing (ray tracing, assimilation, tomography). U.S. Dept. of Commerce, National Oceanic and Atmospheric Administration, National Environmental Satellite, Data, and Information Service, 1996.

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Hirter, Hans Arnold. Mehrdimensionale Interpolation von Meteorologischen Feldern zur Berechnung der Brechungsbedingungen in der Geodäsie. Institut fur Geodäsie und Photogrammetrie, Eidg. Technische Hochschule Zürich, 1998.

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R, Spilker Thomas, and United States. National Aeronautics and Space Administration., eds. Microwave resonator measurements of atmospheric absorption coefficients: A preliminary design study. National Aeronautics and Space Administration, Jet Propulsion Laborator[y], California Institute of Technology, 1995.

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Części książek na temat "Radio refractivity"

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Durodola, O. M., O. E. Samuel, D. O. Nnaike, and E. E. Gideon. "Seasonal Modelling of Radio Refractivity in Jos, Nigeria." In Advances in Physics Research. Atlantis Press International BV, 2025. https://doi.org/10.2991/978-94-6463-644-4_19.

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Omotoso, E. T., and F. Olajide-Owoyomi. "Diurnal and Seasonal Variability of Radio Refractivity Over Coastal Nigeria." In Advances in Physics Research. Atlantis Press International BV, 2025. https://doi.org/10.2991/978-94-6463-644-4_26.

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Poli, P., C. O. Ao, J. Joiner, M. de la Torre Juárez, and R. Hoff. "Evaluation of Refractivity Profiles from CHAMP and SAC-C GPS Radio Occultation." In Occultations for Probing Atmosphere and Climate. Springer Berlin Heidelberg, 2004. http://dx.doi.org/10.1007/978-3-662-09041-1_33.

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Suleman, K. O., A. S. Olawuyi, O. Joseph, et al. "Investigation of Diurnal and Seasonal variation of Radio Refractivity and Field Strength over Ogbomoso, South Western Nigeria." In Advances in Physics Research. Atlantis Press International BV, 2025. https://doi.org/10.2991/978-94-6463-644-4_7.

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Pavelyev, Alexander, Jens Wickert, Yuei-An Liou, Kiyoshi Igarashi, Klemens Hocke, and Cheng-Yung Huang. "Vertical Gradients of Refractivity in the Mesosphere and Atmosphere Retrieved from GPS/MET and CHAMP Radio Occultation Data." In First CHAMP Mission Results for Gravity, Magnetic and Atmospheric Studies. Springer Berlin Heidelberg, 2003. http://dx.doi.org/10.1007/978-3-540-38366-6_68.

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Mousa, A., Y. Shoji, Y. Aoyama, H. Nakamura, and T. Tsuda. "Refractivity Profiles Obtained by Abel Inversion from a Down Looking GPS Radio Occultation Experiment at Mt. Fuji: Preliminary Results and Future Plan." In Occultations for Probing Atmosphere and Climate. Springer Berlin Heidelberg, 2004. http://dx.doi.org/10.1007/978-3-662-09041-1_16.

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Wilgan, Karina, Hugues Brenot, Riccardo Biondi, Galina Dick, and Jens Wickert. "Multi-GNSS Tomography: Case Study of the July 2021 Flood in Germany." In International Association of Geodesy Symposia. Springer Berlin Heidelberg, 2023. http://dx.doi.org/10.1007/1345_2023_198.

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AbstractDue to climate change, intensive storms and severe precipitation will continue to happen, causing destructive flooding. In July 2021, a series of storms with prolonged rain episodes took place in Europe. Several countries were affected by severe floods following that rainfall, causing many deaths and material damage. Thus, a good understanding and forecasting of such events are of uttermost importance. This study highlights the interest of multi-GNSS tomography for the 3D modelling of the neutral atmosphere refractivity. The tropospheric parameters have been retrieved for the July 2021
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Karagianni, E., A. Mitropoulos, N. Drolias, A. Sarantopoulos, and A. Charantonis. "Radio Refractivity and Rain-Rate Estimations over Northwest Aegean Archipelagos for Electromagnetic Wave Attenuation Modelling." In Information, Communication and Environment. CRC Press, 2015. http://dx.doi.org/10.1201/b18514-9.

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Streszczenia konferencji na temat "Radio refractivity"

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Rogers, Ted, Kessen Barrett, and Pranav Sehgal. "Refractivity State Categorization Based On Phased-Array Output." In 2025 United States National Committee of URSI National Radio Science Meeting (USNC-URSI NRSM). IEEE, 2025. https://doi.org/10.23919/usnc-ursinrsm66067.2025.10906895.

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Greenway, Daniel P., Caleb R. Sease, Qing Wang, Ryan Yamaguchi, and Erin E. Hackett. "Assessment of a Humidity and Temperature Retrieval Technique Using Refractivity Measurements." In 2025 United States National Committee of URSI National Radio Science Meeting (USNC-URSI NRSM). IEEE, 2025. https://doi.org/10.23919/usnc-ursinrsm66067.2025.10907108.

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Lewis, Ollie, Chris Brunt, and Malcolm Kitchen. "Refractivity Retrievals Using Interferometry of Aircraft Radio Transmissions: First Results and Potential for Future Experiments." In IGARSS 2024 - 2024 IEEE International Geoscience and Remote Sensing Symposium. IEEE, 2024. http://dx.doi.org/10.1109/igarss53475.2024.10641443.

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Vaughan, Alexis E., Daniel P. Greenway, and Erin E. Hackett. "Using X-Band Radar Refractivity Inversion Techniques to Retrieve Vertical Humidity Profiles in a Marine Environment." In 2024 IEEE INC-USNC-URSI Radio Science Meeting (Joint with AP-S Symposium). IEEE, 2024. http://dx.doi.org/10.23919/inc-usnc-ursi61303.2024.10632443.

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Greenway, Daniel P., and Erin E. Hackett. "Laterally Heterogeneous Refractivity Inversions Using Simulated and Measured X-Band Radar Data During Evaporation Ducting Conditions." In 2024 IEEE INC-USNC-URSI Radio Science Meeting (Joint with AP-S Symposium). IEEE, 2024. http://dx.doi.org/10.23919/inc-usnc-ursi61303.2024.10632225.

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Chen, Yong, Xinjia Zhou, Shu-Peng Ho, Xi Shao, and Tung-Chang Liu. "Comparison of Radio Occultation Bending Angle and Refractivity Processed by Different Inversion Algorithms from Multi-Ro Missions." In IGARSS 2024 - 2024 IEEE International Geoscience and Remote Sensing Symposium. IEEE, 2024. http://dx.doi.org/10.1109/igarss53475.2024.10641034.

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Ascencio, Ana, Ted Rogers, Neil Gordon, Tracy Haack, and Kate Horgan. "Refractivity data fusion." In 2015 USNC-URSI Radio Science Meeting (Joint with AP-S Symposium). IEEE, 2015. http://dx.doi.org/10.1109/usnc-ursi.2015.7303531.

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Sukhbaatar, Jamiyan, and Nyamjav Jambaljav. "Modeling Surface Radio Refractivity in Ulaanbaatar, Mongolia." In 2018 USNC-URSI Radio Science Meeting (Joint with AP-S Symposium). IEEE, 2018. http://dx.doi.org/10.1109/usnc-ursi.2018.8602953.

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Gibson, A. I. "Remote sensing of radio refractivity by lidar." In Tenth International Conference on Antennas and Propagation (ICAP). IEE, 1997. http://dx.doi.org/10.1049/cp:19970392.

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Ogunjo, Samuel T., Moses O. Ajewole, A. T. Adediji, and J. S. Ojo. "Predicting radio refractivity using a stochastic model." In 2014 XXXIth URSI General Assembly and Scientific Symposium (URSI GASS). IEEE, 2014. http://dx.doi.org/10.1109/ursigass.2014.6929637.

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