يعرض 1 - 6 نتائج من 6 نتيجة بحث عن '"wave propagation"', وقت الاستعلام: 0.59s تنقيح النتائج
  1. 1
    دورية أكاديمية

    المساهمون: Spogli, L., Istituto Nazionale di Geofisica e Vulcanologia, Sezione Roma2, Roma, Italia, Alfonsi, Lu., Cilliers, P. J., South African National Space Agency (SANSA), Space Science Directorate, Western Cape, South Africa, Correia, E., Instituto Nacional de Pesquisas Espaciais (INPE), Centro de Rádio Astronomia e Astrofísica Mackenzie (CRAAM), São José dos Campos, Brazil, De Franceschi, G., Mitchell, C. N., University of Bath, Electronic and Electrical Engineering, Bath, United Kingdom, Romano, V., Kinrade, J., Cabrera, M. A., Laboratorio de Telecomunicaciones, Universidad Nacional de Tucumán (UNT), Facultad de Ciencias Exactas y Tecnología (FACET), Departamento de Electricidad, Electrónica y Computación, Tucumán, Argentina

    العلاقة: ANNALS OF GEOPHYSICS; 2 / 56 (2013); Abdu, M.A., I.S. Batista, A.J. Carrasco and C.G.M. Brum (2005). South Atlantic magnetic anomaly ionization: a review and a new focus on electrodynamic effects in the equatorial ionosphere, J. Atm. Sol. Terr. Phys., 67, 1643-1657. Abdu, M.A., E. Alam Kherani, I.S. Batista, E.R. de Paula, D.C. Fritts and J.H.A. Sobral (2009). Gravity wave initiation of equatorial spread F/plasma bubble irregularities based on observational data from the SpreadFEx campaign, Annales Geophysicae, 27, 2607-2622; doi:10.5194/angeo-27-2607-2009. Alfonsi, L., L. Spogli, G. De Franceschi, V. Romano, M. Aquino, A. Dodson and C.N. Mitchell (2011). Bipolar climatology of GPS ionospheric scintillation at solar minimum, Radio Sci., 46, RS0D05; doi:10.1029/2010RS004571. Baker, K.B., and Wing, S. (1989). A new magnetic coordinate coordinate system for conjugate studies at high latitudes, J. Geophys. Res., 94, 9139-9143. Basu, S., K.M. Groves, S. Basu and P.J. Sultan (2002). Specification and forecasting of scintillations in communication/ navigation links: current status and future plans, J. Atmos. Sol. Terr. Phys., 64, 1745-1754. Cabrera, M.A., M. Pezzopane, E. Zuccheretti and R.G. Ezquer (2010). Satellite traces, range spread-F occurrence, and gravity wave propagation at the southern anomaly crest, Annales Geophysicae, 28, 1133-1140. Committee on the Societal and Economic Impacts of Severe Space Weather Events (200). Severe Space Weather Events - Understanding Societal and Economic Impacts Workshop Report, ISBN 0-309- 12770-X. De Franceschi, G., L. Alfonsi, V. Romano, M.H.O. Aquino, A. Dodson, C.N. Mitchell and A.W. Wernik (2008). Dynamics of high latitude patches and associated small scale irregularities, J. Atmos. Sol.-Terr. Phys., 70, 879-888; doi:10.1016/j.jastp.2007.05.018. Fejer, B.G., E.R. de Paula, I.S. Batista and R.F. Woodman (1989). Equatorial F region vertical plasma drifts during solar maxima, J. Geophys. Res., 94, 12049-12054. Fejer, B.G., E.R. de Paula, S.A. Gonzalez and R.F. Woodman (1991). Average vertical and zonal F region plasma drifts over Jicamarca, J. Geophys. Res., 96, 13901-13906. Feldstein, Y.I. (1963). On morphology and auroral and magnetic disturbances at high latitudes Geomagn. Aeron., 3, 183-192. Fisher, G., and J. Kunches (2011). Building resilience of the global positioning system to space weather, Space Weather, 9, S12004; doi:10.1029/2011SW000718. Holzworth, R.H., and C.-I. Meng (1975). Mathematical representation of the auroral oval, Geophys. Res. Lett., 2, 377-380. Jin, S.G., O. Luo, P. Park (2008). GPS observations of the ionospheric F2-layer behavior during the 20th November 2003 geomagnetic storm over South Korea. J. Geod. 82, 883-892; doi:10.1007/s00190-008- 0217-x. Kintner, P.M., T. Humphreys and J. Hinks (2009). GNSS and Ionospheric Scintillation – How to survive to the next solar maximum, InsideGNSS, July/August 2009, 22-30. Mannucci, A.J., B.D. Wilson and C.D. Edwards (1993). A new method for monitoring the Earth ionosphere total electron content using the GPS global network, Paper presented at ION GPS 93, Inst. of Navig., Salt Lake City, Utah. Rino, C.L. (1979a). A power law phase screen model for ionospheric scintillation: 1. Weak scatter, Radio Sci., 14 (6), 1135-1145. Rino, C.L. (1979b). A power law phase screen model for ionospheric scintillation: 2. Strong scatter, Radio Sci., 14 (6), 1147-1155. Spogli, L., L. Alfonsi, G. De Franceschi, V. Romano, M.H.O. Aquino and A. Dodson (2009). Climatology of GPS ionospheric scintillations over high and midlatitude European regions, Annales Geophysicae, 27, 3429-3437. Spogli, L., L. Alfonsi, G. De Franceschi, V. Romano, M.H.O. Aquino and A. Dodson (2010). Climatology of GNSS ionospheric scintillations at high and mid latitudes under different solar activity conditions, Il Nuovo Cimento B, 5/6, 623-632; doi:10.1393/ncb/ i2010-10857-7. Taylor, J.R. (1997). An Introduction to Error Analysis: The Study of Uncertainties in Physical Measurement, 2nd ed., Univ. Sci., Sausalito, California. Tsunoda, R.T. (1988). High-Latitude F region irregularities: a review and synthesis, Rev. Geophys., 26, 719-760. Van Dierendonck, A.J., J. Klobuchar and Q. Hua (1993). Ionospheric scintillation monitoring using commercial single frequency C/A code receivers, In: ION GPS-93 Proceedings of the Sixth International Technical Meeting of the Satellite Division of the Institute of Navigation, (Salt Lake City, U.S.A., September 22-24, 1993), 1333-1342. Wernik, A.W., J.A. Secan and E.J. Fremouw (2003). Ionospheric irregularities and scintillation, Adv. Space Res., 31 (4), 971-981. Yeh, K.C., and C.H. Liu (1982). Radio wave scintillations in the ionosphere, Proceedings of the IEEE 70 (4), 324-360. Young, E.R., W. J. Burke, F.J. Rich and R.C. Sagalyn (1984). The distribution of topside spread F from in situ measurements by Defense Meteorological Satellite Program: F2 and F4, J. Geophys. Res., 89, 5565-5573.; http://hdl.handle.net/2122/8730Test

  2. 2
    دورية أكاديمية

    المساهمون: Prikryl, P., Communications Research Centre, Ottawa, ON, Canada, Zhang, Y., Johns Hopkins University Applied Physics Laboratory, Laurel, MD, United States, Ebihara, Y., Research Institute for Sustainable Humanosphere, Kyoto University, Kyoto, Japan, Ghoddousi-Fard, R., Natural Resources Canada, Geodetic Survey Division, Ottawa, ON, Canada, Jayachandran, P. T., University of New Brunswick, Physics Department, Fredericton, NB, Canada, Kinrade, J., University of Bath, Electronic and Electrical Engineering, Bath, United Kingdom, Mitchell, C. N., Weatherwax, A. T., Siena College, Physics and Astronomy, Loudonville, NY, United States, Bust, G., Cilliers, P. J., South African National Space Agency, Space Science Directorate, Hermanus, South Africa, Spogli, L., Istituto Nazionale di Geofisica e Vulcanologia, Sezione Roma2, Roma, Italia, Alfonsi, Lu., Romano, V., Ning, B., Institute of Geology and Geophysics, Chinese Academy of Sciences, Beijing, China, Li, G., Jarvis, M. J., British Antarctic Survey, Physical Sciences Division, Cambridge, United Kingdom, Danskin, D. W., Natural Resources Canada, Geomagnetic Laboratory, Ottawa, ON, Canada, Spanswick, E., University of Calgary, Department of Physics and Astronomy, AB, Canada, Donovan, E., Terkildsen, M., IPS Radio and Space Services, Bureau of Meteorology, Haymarket, NSW, Australia

    العلاقة: Annals of Geophysics; 2 / 56 (2013); Alfonsi, L., L. Spogli, G. De Franceschi, V. Romano, M. Aquino, A. Dodson and C.N. Mitchell (2011). Bipolar climatology of GPS ionospheric scintillation at solar minimum, Radio Sci., 46, RS0D05; doi:10.1029/ 2010RS004571. Basu, S., E.J. Weber, T.W. Bullett, M.J. Keskinen, E. MacKenzie, P. Doherty, R. Sheehan, H. Kuenzler, P. Ning and J. Bongiolatti (1998). Characteristics of plasma structuring in the cusp/cleft region at Svalbard, Radio Sci., 33, 1885-1899; doi:10.1029/98RS01597. Belcher, J.W., and L. Davis Jr. (1971). Large-amplitude Alfvén waves in the interplanetary 458 medium, 2, J. Geophys. Res., 76, 3534-3563. Carlson, H.C. (2012). Sharpening our thinking about polar cap ionospheric patch morphology, research, and mitigation techniques, Radio Sci., 47, RS0L21; doi:10.1029/2011RS004946. Donovan, E., T. Trondsen, L. Cogger and B. Jackel (2003). Auroral imaging within the Canadian CANOPUS and NORSTAR projects, Sodankylä Geophysical Observatory Publications, 92, 109-112. Ebihara, Y., R. Kataoka, A.T. Weatherwax and M. Yamauchi (2010). Dayside proton aurora associated with magnetic impulse events: South Pole observations, J. Geophys. Res., 115, A04301; doi:10.1029/2009JA0 14760. Feldstein, Y.I., and G.V. Starkov (1967). Dynamics of auroral belt and polar geomagnetic disturbances, Planet. Space Sci., 15, 209-230. Ghoddousi-Fard, R., and F. Lahaye (2012). Monitoring GPS phase rate variations as a proxy scintillation index, Abstract G012-1465908, GNSS and the Atmosphere, AGU Fall Meeting, San Francisco, 3-7 December 2012. Holzworth, R.H., and C.-I. Meng (1975). Mathematical representation of the auroral oval, Geophys. Res. Lett., 2, 377-380. Huttunen, K.E.J., R. Schwenn, V. Bothmer and H.E.J. Koskinen (2005). Properties and geoeffectiveness of magnetic clouds in the rising, maximum and early declining phases of solar cycle 23, Annales Geophysicae, 23, 625-641; doi:10.5194/angeo-23-625-2005. Jayachandran, P.T., et al. (2009). Canadian High Arctic Ionospheric Network (CHAIN), Radio Sci., 44, RS0A03; doi:10.1029/2008RS004046. Kinrade, J., C.N. Mitchell, P. Yin, N. Smith, M.J. Jarvis, D.J. Maxfield, M.C. Rose, G.S. Bust and A.T. Weatherwax (2012). Ionospheric scintillation over Antarctica during the storm of 5-6 April 2010, J. Geophys. Res., 117, A05304; doi:10.1029/2011JA017073. Laundal, K.M., and N. Østgaard (2009). Asymmetric auroral intensities in the Earth's northern and southern hemispheres, Nature 460, 491-493; doi:10.1038/ nature08154. Li, G., B. Ning, Z. Ren and L. Hu (2010). Statistics of GPS ionospheric scintillation and irregularities over polar regions at solar minimum, GPS Solutions, 14 (4), 331-341; doi:10.1007/s10291-009-0156-x. Liu, W.W. (2005). Canadian space environment program and international living with a star, Adv. Space Res., 35, 51-60. Mann, I.R., D.K. Milling, I.J. Rae, L.G. Ozeke, A. Kale, Z.C. Kale, K.R. Murphy, A. Parent, M. Usanova, D.M. Pahud, V. Lee, E.-A. Amalraj, D.D. Wallis, V. Angelopoulos, K.-H. Glassmeier, C.T. Russell, H.- U., Auster and H.J. Singer (2008). The Upgraded CARISMA Magnetometer Array in the THEMIS Era, Space Sci. Rev., 141, 413-451; doi:10.1007/s1121 4-008-9457-6. Motoba, T., K. Hosokawa, Y. Ogawa, N. Sato, A. Kadokura, S.C. Buchert and H. Rème (2011). In-situ evidence for interplanetary magnetic field induced tail twisting associated with relative displacement of conjugate auroral features, J. Geophys. Res., 116, A04209; doi:10.1029/2010JA016206. Newell, P.T., T. Sotirelis and S. Wing (2009). Diffuse, monoenergetic, and broadband aurora: The global precipitation budget, J. Geophys. Res. 114, A09207; doi:10.1029/2009JA014326. Nosé, M., et al. (2012). Wp index: A new substorm index derived from high-resolution geomagnetic field data at low latitude, Space Weather, 10, S08002; doi:10.1029/2012SW000785. Osherovich, V.A., J. Fainberg and R.G. Stone (1999). Solar-wind quasi-invariant as a new index of solar activity, Geophys. Res. Lett., 26, 2597-2600. Østgaard, N., S.B. Mende, H.U. Frey, T.J. Immel, L.A. Frank, J.B. Sigwarth and T.J. Stubbs (2004). Interplanetary magnetic field control of the location of substorm onset and auroral features in the conjugate hemispheres, J. Geophys. Res., 109, A07204; doi:10.1029/2003JA010370. Paxton, L.J., D. Morrison, Y. Zhang, H. Kil, B. Wolven, B.S. Ogorzalek, D.C. Humm and C.-I. Meng (2002). Validation of remote sensing products produced by the Special Sensor Ultraviolet Scanning Imager (SSUSI) – a far-UV imaging spectrograph on DMSP F16, Proc. SPIE, 4485, 338. Prikryl, P., J.W. MacDougall, I.F. Grant, D.P. Steele, G.J. Sofko and R.A. Greenwald (1999). Observations of polar patches generated by solar wind Alfven wave coupling to the dayside magnetosphere, Annales Geophysicae, 17, 463-489. Prikryl, P., P.T. Jayachandran, S.C. Mushini, D. Pokhotelov, J.W. MacDougall, E., Donovan, E. Spanswick and J.-P. St.-Maurice (2010). GPS TEC, scintillation and cycle slips observed at high latitudes during solar minimum, Annales Geophysicae, 28, 1307-1316. Prikryl, P., P.T. Jayachandran, S.C. Mushini and R. Chadwick (2011a). Climatology of GPS phase scintillation and HF radar backscatter for the high-latitude ionosphere under solar minimum conditions, Annales Geophysicae, 29, 377-392; doi:10.5194/an geo-29-377-2011. Prikryl, P., et al. (2011b). Interhemispheric comparison of GPS phase scintillation at high latitudes during the magnetic-cloud-induced geomagnetic storm of 5-7 April 2010, Annales Geophysicae, 29, 2287-2304; doi:10.5194/angeo-29-2287-2011. Prikryl, P., R. Ghoddousi-Fard, B.S.R. Kunduri, E.G. Thomas, A.J. Coster, P.T. Jayachandran, E. Spanswick and D.W. Danskin (2013). GPS phase scintillation and proxy indices observed at high latitudes during a moderate geomagnetic storm, Annales Geophysicae, 31, 805-816; doi:10.5194/angeo-31-805-2013. Rodger, A.S., and A.C. Graham (1996). Diurnal and seasonal occurrence of polar patches, Annales Geophysicae, 14, 533-537. Sato, N., T. Nagaoka, K. Hashimoto and T. Saemundsson (1998). Conjugacy of isolated auroral arcs and nonconjugate auroral breakups, J. Geophys. Res., 103, 11641-11652; doi:10.1029/98JA00461. Sato, N., A. Kadokura, Y. Ebihara, H. Deguchi and T. Saemundsson (2005). Tracing geomagnetic conjugate points using exceptionally similar synchronous auroras, Geophys. Res. Lett., 32, L17109; doi:10.1029/ 2005GL023710. Smith, A.M., C.N. Mitchell, R.J. Watson, R.W. Meggs, P.M. Kintner, K. Kauristie and F. Honary (2008). GPS scintillation in the high arctic associated with an auroral arc, Space Weather, 6, S03D01; doi:10.1029/20 07SW000349. Spanswick, E., E. Donovan, R. Friedel and A. Korth (2007). Ground-based identification of dispersionless electron injections, Geophys. Res. Lett., 34, L03101; doi:10.1029/2006GL028329. Spogli L., Lu. Alfonsi, G. De Franceschi, V. Romano, M.H.O. Aquino and A. Dodson (2009). Climatology of GPS ionospheric scintillations over high and midlatitude European regions, Annales Geophysicae, 27, 3429-3437. Watson, C., P.T. Jayachandran, E. Spanswick, E.F. Donovan, and D.W. Danskin (2011). GPS TEC technique for observation of the evolution of substorm particle precipitation, J. Geophys. Res., 116, A00I90; doi:10.1029/2010JA015732. Zhang, Y. and L.J. Paxton (2008). An empirical Kp-dependent global auroral model based on TIMED/GUVI FUV data, J. Atmosph. Solar-Terrest. Phys., 70, 1231-1242.; http://hdl.handle.net/2122/8731Test

  3. 3
    دورية أكاديمية

    المساهمون: Alfonsi, Lu., Istituto Nazionale di Geofisica e Vulcanologia, Sezione Roma2, Roma, Italia, De Franceschi, G., Romano, V., Aquino, M., Institute of Engineering Surveying and Space Geodesy (IESSG), The University of Nottingham, Dodson, A.

    العلاقة: Location Magazine; / November-December (2006); http://hdl.handle.net/2122/2183Test; Aquino M, A. Dodson, G. De Franceschi, L. Alfonsi, V. Romano and C. N. Mitchell, Scintillation Monitoring Results during the 30 October 2003 Space Weather Event, Online Proceedings, ESA/ESTEC Space Weather Week, Noordwijk, Netherlands, November 2005. Aquino M., A. Dodson A., H. J. Souter, T. Moore, Ionospheric Scintillation Effects on GPS Carrier Phase Positioning Accuracy at Auroral and Sub-auroral Latitudes, IAG Symposium, Vol. 130, 2006, in press. De Franceschi G., L. Alfonsi, V. Romano, ISACCO: an Italian project to monitor the high latitudes ionosphere by means of GPS receivers, GPS Solutions, DOI 10.1007/s10291-006-0036-6, 2006. De Franceschi G., V. Romano, L. Alfonsi, A. Dodson, M. Aquino, C.N. Mitchell, A.W. Wernik, Dynamics of the high latitude patches and associated small scale irregularities, submitted to J. Atmos. Sol-Terr. Phys., 2006. Doherty, P. H., S. H. Delay, C. E. Valladares and J. Klobuchar, Ionospheric Scintillation Effects in the Equatorial and Auroral Regions. In: Proceedings of ION GPS 2000, Salt Lake City, USA, 2000. Gopalswamy, N., L. Barbieri, G. Lu, S. P. Plunkett, and R. M. Skoug, Introduction to the special section: Violent Sun-Earth connection events of October–November 2003, Geophys. Res. Lett., 32, L03S01, doi:10.1029/2005GL022348, 2005. Van Dierendonck, A.J., J. Klobuchar, and Q. Hua, Ionospheric scintillation monitoring using commercial single frequency C/A code receivers, in ION GPS-93 Proceedings: Sixth International Technical Meeting of the Satellite Division of the Institute of Navigation, pp. 1333–1342, Inst. of Navig., Salt Lake City, Utah, 1993.; http://hdl.handle.net/2122/4035Test

  4. 4
    دورية أكاديمية

    المساهمون: Stanislawska, I., Space Research Centre, PAS, Warsaw, Poland., Lastovicka, J., Institute of Atmospheric Physics, Prague, Czech Republic., Bourdillon, A., IETR, University of Rennes 1, Rennes, France., Zolesi, B., Istituto Nazionale di Geofisica e Vulcanologia, Sezione Roma2, Roma, Italia, Cander, Lj. R., Rutherford Appleton Laboratory, Didcot, UK.

    العلاقة: Space Weather; / 8 (2010); Angling, M. J., and B. Khattatov (2006), Comparative study of two assimilative models of the ionosphere, Radio Sci., 41, RS5S20, doi:10.1029/2005RS003372. Belehaki, A., P. Marinov, I. Kutiev, N. Jakowski, and S. Stankov (2006), Comparison of the topside ionosphere scale height determined by topside sounders model and bottomside Digisonde profiles, Adv. Space Res., 37(5), 963-- 966, doi:10.1016/j.asr.2005.09.014. Bradley, P. A. (1995), PRIME (Prediction and Retrospective Ionospheric Modelling over Europe), COST Action 238 Final Rep. Adv. Issue, Comm. of the Eur. Communities, Brussels.Bremer, J., L. R. Cander, J. Mielich, and R. Stamper (2006), Derivation and test of ionospheric activity indices from real-time ionosonde observations in the European region, J. Atmos. Sol. Terr. Phys., 68(18), 2075-- 2090, doi:10.1016/j.jastp.2006.07.003. Cander, L. R. (2008), Ionospheric research and space weather services, J. Atmos. Sol. Terr. Phys., 70(15), 1870 -- 1878, doi:10.1016/ j.jastp.2008.05.010. Fotiadis, D. N., and S. S. Kouris (2006), A functional dependence of foF2 variability on latitude, Adv. Space Res., 37(5), 1023-- 1028, doi:10.1016/j.asr.2005.02.054. Gulyaeva, T. L. (2007), Variable coupling between the bottomside and topside thickness of the ionosphere, J. Atmos. Sol. Terr. Phys., 69(4 -- 5), 528-- 536, doi:10.1016/j.jastp.2006.10.015. Gulyaeva, T. L., and I. Stanislawska (2008), Derivation of a planetary ionospheric storm index, Ann. Geophys., 26, 2649-- 2655. Hanbaba, R. (1999), Improved quality of service in ionospheric telecommunication systems planning and operation, COST 251 Final Rep., Space Res. Cent., Warsaw. Herna´ndez-Pajares, M., J. M. Juan, and J. Sanz (2006), Medium-scale traveling ionospheric disturbances affecting GPS measurements: Spatial and temporal analysis, J. Geophys. Res., 111, A07S11, doi:10.1029/2005JA011474. Jakowski, N., et al. (2008), Ionospheric behavior over Europe during the solar eclipse of 3 October 2005, J. Atmos. Sol. Terr. Phys., 70(6), 836-- 853, doi:10.1016/j.jastp.2007.02.016. Kouris, S. S., K. Polimeris, and L. Cander (2006), Specifications of TEC variability, Adv. Space Res., 37(5), 983 -- 1004, doi:10.1016/ j.asr.2005.01.102. Krankowski, A., and I. I. Shagimuratov (2006), Impact of TEC fluctuations in the Antarctic ionosphere on GPS positioning accuracy, Artif. Satell., 41(1), 43-- 56, doi:10.2478/v10018-007-0005-5. Lastovicka, J., R. A. Akmaev, G. Beig, J. Bremer, and J. T. Emmert (2006a), Global change in the upper atmosphere, Science, 314(5803), 1253-- 1254, doi:10.1126/science.1135134. Lastovicka, J., et al. (2006b), Long-term trends in foF2: A comparison of various methods, J. Atmos. Sol. Terr. Phys., 68(17), 1854-- 1870, doi:10.1016/j.jastp.2006.02.009. Mikhailov, A. V. (2006), Ionospheric long-term trends: Can the geomagnetic control and the greenhouse hypotheses be reconciled?, Ann. Geophys., 24(10), 2533-- 2541. Nava, B., S. M. Radicella, R. Leitinger, and P. Coý¨sson (2006), A nearreal- time model-assisted ionosphere electron density retrieval method, Radio Sci., 41, RS6S16, doi:10.1029/2005RS003386. Nava, B., P. Coý¨sson, and S. M. Radicella (2008), A new version of the NeQuick ionosphere electron density model, J. Atmos. Sol. Terr. Phys., 70(15), 1856-- 1862, doi:10.1016/j.jastp.2008.01.015. Perrone, L., M. Pietrella, and B. Zolesi (2007), A prediction model of foF2 over periods of severe geomagnetic activity, Adv. Space Res., 39(5), 674-- 680, doi:10.1016/j.asr.2006.08.008. Pezzopane, M., and C. Scotto (2008), A method for automatic scaling of F1 critical frequency from ionograms, Radio Sci., 43, RS2S91, doi:10.1029/2007RS003723. Pryse, S. E., L. Kersley, D. Malan, and G. J. Bishop (2006), Parameterization of the main ionospheric trough in the European sector, Radio Sci., 41, RS5S14, doi:10.1029/2005RS003364. Romano, V., S. Pau, M. Pezzopane, E. Zuccheretti, B. Zolesi, G. De Franceschi, and S. Locatelli (2008), The electronic space weather upper atmosphere (eSWua) project at INGV: Advancements and state of the art, Ann. Geophys., 26, 345-- 351. Stanislawska, I., et al. (2009), COST 296 scientific results designed for operational use: COST 296 final report, Ann. Geophys., 52(3 -- 4), 215-- 227. Stankov, S. M., and N. Jakowski (2006), Topside ionospheric scale height analysis and modelling based on radio occultation measurements, J. Atmos. Sol. Terr. Phys., 68(2), 134 -- 162, doi:10.1016/ j.jastp.2005.10.003. Stolle, C., S. Schlu¨ ter, S. Heise, C. Jacobi, N. Jakowski, and A. Raabe (2006), A GPS based three-dimensional ionospheric imaging tool: Process and assessment, Adv. Space Res., 38(11), 2313-- 2317, doi:10.1016/j.asr.2006.05.016. Tulunay, E., E. T. Senalp, S. M. Radicella, and Y. Tulunay (2006), Forecasting total electron content maps by neural network technique, Radio Sci., 41, RS4016, doi:10.1029/2005RS003285. Zolesi, B., and L. R. Cander (2004), COST 271 Action---Effects of the upper atmosphere on terrestrial and Earth-space communications: Introduction, Ann. Geophys., 47(2 -- 3), 915-- 925.; http://hdl.handle.net/2122/6672Test

  5. 5
    دورية أكاديمية

    المساهمون: Bourdillon, A., IETR – Universite´ de Rennes1, Rennes, Baˆt 11D, Campus de Beaulieu, 35042 Rennes Cedex, France, Zolesi, B., Istituto Nazionale di Geofisica e Vulcanologia, Sezione Roma2, Roma, Italia, Cander, L. R., STFC, Rutherford Appleton Laboratory, Chilton, Didcot OX11 0QX, UK

    العلاقة: Advances in Space Research; 9 / 45 (2010); Bradley, P.A. PRIME (Prediction Regional Ionospheric Modelling over Europe), COST Action 238 Final Report, Commission of the European Communities, Brussels, 1995. Bourdillon, A., Cander, Lj.R., Zolesi, B. (Eds.), COST 296 MIERS Mitigation of Ionospheric Effects on Radio Systems, Annals of Geophysics, Special issue, vol. 52, pp. 3–4, 2009. Hanbaba, R. Improved Quality of Service in Ionospheric Telecommunication Systems Planning and Operation, COST Action 251 Final Report, Space Research Centre, Warsaw, 1999 (ftp://www.cbk.waw.pl/). Kouris, S.S., Polimeris, K.V., Cander, Lj.R., Ciraolo, L. Solar and latitude dependence of TEC and slab thickness. Journal of Atmospheric and Solar – Terrestrial Physics 70, 1351–1365, 2008. Lilensten, J., Zolesi, B, Belehaki, A., Stanislawska, I., Perrone, L., Collaboration among COST actions. Ionosphere and space weather, COST 724 Final Report, 2007 (http://www.earth-prints.org/bitstreamTest/ 2122/4414/1/COST_Action_724-final_report_paper.pdf). Reinisch, B.W., Galkin, I.A., Khmyrov, G.M., Kozlov, A.V., Bibl, K., Lisysyan, I.A., Cheney, G.P., Huang, X., Kitrosser, D.F., Paznukhov, V.V., Luo, Y., Jones, W., Stelmash, S., Hamel, R., Grochmal, J. The new digisonde for research and monitoring applications. Radio Science 44, RS0A24, doi:10.1029/2008RS004115, 2009. Tsagouri, I., Zolesi, B., Belehaki, A., Cander, Lj.R. Evaluation of the performance of the real-time updated simplified ionospheric regional model for the European area. Journal of Atmospheric and Solar- Terrestrial Physics 67 (12), 1137–1146, 2005. Zolesi, B., Cander, Lj.R. (Eds.), COST 271 Action “Effects of the Upper Atmosphere on Terrestrial and Earth-Space Communications” Final Report, Annals of Geophysics, Supplement to vol 47(2/3), 2004. Zolesi, B., Cander, Lj.R. From COST 238 to COST 296: Four European COST Actions on Ionospheric Physics and Radio Propagation, Radio Sounding and Plasma Physics; American Institute of Physics, AIP Conference Proceedings, vol. 974, pp. 39–46, 2008.; http://hdl.handle.net/2122/6450Test

  6. 6
    دورية أكاديمية

    المؤلفون: Cander, L. R., Zolesi, B.

    المساهمون: Cander, L. R., Rutherford Appleton Laboratory, Space Science & Technology Department, Radio Communications Research Unit, Chilton, Didcot, Oxon OX11 0QX, UK, Zolesi, B., Istituto Nazionale di Geofisica e Vulcanologia, Sezione Roma2, Roma, Italia

    العلاقة: Journal of Atmospheric and Solar-Terrestrial Physics; 12 / 67 (2005); http://hdl.handle.net/2122/3982Test