參考文獻 |
﹝1﹞Shiu, C.-J., Liu, S. C., and Chen, J. P., “Diurnally asymmetric trends of temperature, humidity and precipitation in Taiwan”, J. Climate, Vol.22, NO.21, pp. 5635-5649, 2009.
﹝2﹞Liu, S. C., Fu, C., Shiu, C. J., Chen J. P., and Wu, F., “Temperature dependence of global precipitation extremes”, Geophys. Res. Lett., Vol.36, L17702, doi:10.1029/2009GL040218, 2009.
﹝3﹞王光華、劉振榮,「應用微波資料估計台灣附近地區降雨之研究」,航測及遙測學刊,第三卷,第三期,39-66頁,1998。
﹝4﹞Liu G.-R., C.-C. Liu, and T.-H. Kuo, “Rainfall intensity estimation by ground-based dual-frequency microwave radiometers”, J. Appl. Meteor., 40, pp. 1035–1041, 2001.
﹝5﹞Westwater, E. R., “The accuracy of water vapor and cloud liquid determination by dual-frequency ground-based microwave radiometry”, Radio Sci., 13, pp. 677–685, 1978.
﹝6﹞Hogg, D. C., F. O. Guiraud, J. B. Snider, M. T. Decker and E. R. Westwater, “A Steerable Dual-Channel Microwave Radiometer for Measurement of Water Vapor and Liquid in the Troposphere”, J. Appl. Meteor., 22, pp. 789-806, 1983.
﹝7﹞Marzano, F. S., E. Fionda, P. Ciotti, and A. Martellucci, “Ground-based multi-frequency microwave radiometry for rainfall remote sensing”, Trans. Geosci. Rem. Sens., 40, pp. 742–759, 2002.
﹝8﹞Czekala, H., S. Crewell, A. Hornbostel, A. Schroth, C. Simmer, and A. Thiele, “Interpretation of polarization features in ground based microwave observations as caused by horizontally aligned oblate rain drops”, J. Appl. Meteor., 40, pp. 1918–1932, 2001.
﹝9﹞Battaglia, A., P. Saavedra, C. Simmer, and T. Rose, “Rain observations by multifrequency dual-polarized radiometer”, IEEE, Geosci. Remote Sens. Lett., 6, pp. 354-358, 2009.
﹝10﹞Battaglia, A., P. Saavedra, T. Rose, and C. Simmer, “Characterization of Precipitating Clouds by Ground-Based Measurements with the Triple-Frequency Polarized Microwave Radiometer ADMIRARI”, J. Appl. Meteor., 49, pp. 394-414, 2010.
﹝11﹞葉南慶、汪建良、蔡明達、陳萬金、胡仁基,「利用地基雙偏極化微波輻射儀估算降雨」,大氣科學,第三十九期,第三號,第215-242頁, 2011。
﹝12﹞Woodman, R. F. and Guillen, A., “Radar observations of winds and turbulence in the stratosphere and mesosphere”, J. Atmos. Sci., 31, pp. 493–505, 1974.
﹝13﹞Fukao, S., Wakasugi, K., Sato, T., Tsuda, T., Kimura, I., Takeuchi, N., Matsuo, M., and Kato, S., “Simultaneous observation of precipitation atmosphere by VHF and C/Ku band Radars”, Radio Sci., 20, pp. 622–630, 1985.
﹝14﹞Larsen, M. F. and Röttger, J., “Observation of thunderstorm reflectivities and Doppler velocities measured at VHF and UHF”, J. Atmos. Ocean. Tech., 4, pp. 151–159, 1987.
﹝15﹞Chilson, P. B., Ulbrich, C. W., and Larsen, M. F., “Observation of a tropical thunderstorm using a vertically pointing, dual-frequency, collinear beam Doppler radar”, J. Atmos. Ocean. Tech., 10, pp. 663–673, 1993.
﹝16﹞Chu, Y.-H., Chian, L.-P., and Liu, C.-H., “The investigations of the atmospheric precipitation by using Chung-Li VHF radar”, Radio Sci., 26, pp. 717–729, 1991.
﹝17﹞Chu, Y.-H. and Lin, C.-S., “The severe depletion of turbulent echo power in precipitation using the Chung-Li VHF Doppler radar”, Radio Sci., 29, pp. 1311–1320, 1994.
﹝18﹞Rao, T. N., Rao, D. N., and Raghavan, S., “Tropical precipitating systems observed with Indian MST radar”, Radio Sci., 34, pp. 1125–1139, 1999.
﹝19﹞Su, C.-L., Chu, Y.-H., and Lo, I.-Y., “Negative correlation between terminal velocity and VHF radar reflectivity: observation and plausible explanation”, Ann. Geophys., 27, pp. 1631–1642, https://doi.org/10.5194/angeo-27-1631-2009, 2009.
﹝20﹞Franke, S. J., “Pulse compression and frequency domain interferometry with a frequency-hopped MST radar”, Radio Sci., 25, pp. 565–574, 1990.
﹝21﹞Chilson, P. B., Yu, T.-Y., Strauch, R. G., Muschinski, A., and Palmer, R. D., “Implementation and validation of range imaging on a UHF radar wind profiler”, J. Atmos. Ocean. Tech., 20, pp. 987–996, 2003.
﹝22﹞Palmer, R. D., Yu, T.-Y., and Chilson, P. B., “Range imaging using frequency diversity”, Radio Sci., 34, pp. 1485–1496, https://doi.org/10.1029/1999RS900089, 1999.
﹝23﹞Luce, H., Yamamoto, M., Fukao, S., Hélal, D., and Crochet, M., “A frequency radar interferometric imaging (FII) technique based on high-resolution methods”, J. Atmos. Sol.-Terr. Phy., 63, pp. 221–234, 2001.
﹝24﹞Luce, H., Hassenpflug, G., Yamamoto, M., and Fukao, S., “Comparisons of refractive index gradient and stability profiles measured by balloons and the MU radar at a high vertical resolution in the lower stratosphere”, Ann. Geophys., 25, pp. 47–57, https://doi.org/10.5194/angeo-25-47-2007, 2007.
﹝25﹞Luce, H., Takai, T., Nakamura, N., Yamamoto, M., and Fukao, S., “Simultaneous observations of thin humidity gradients in the lower troposphere with a Raman Lidar and the very high-frequency middle- and upperatmosphere radar”, J. Atmos. Ocean. Tech., 27, pp. 950–956, 2010.
﹝26﹞Chen, J.-S., Tsai, S.-C., Su, C.-L., and Chu, Y.-H., “Evaluation of multifrequency range imaging technique implemented on the Chung-Li VHF atmospheric radar”, Atmos. Meas. Tech., 9, pp. 2345–2355, https://doi.org/10.5194/amt-9-2345-2016, 2016a.
﹝27﹞Chen, J.-S., Chu, Y.-H., Su, C.-L., Hashiguchi, H., and Li, Y., “Range imaging of E-region field-aligned irregularities by using a multifrequency technique: validation and initial results”, IEEE T. Geosci. Remote Sens., 54, pp. 3739–3749, https://doi.org/10.1109/TGRS.2016.2521702, 2016b.
﹝28﹞Chilson, P. B., Palmer, R. D., Muschinski, A., Hooper, D. A., Schmidt, G., and Steinhagen, H., “SOMARE-99: A demonstrational field campaign for ultra-high resolution VHF atmospheric profiling using frequency diversity”, Radio Sci., 36, pp. 695–707, 2001.
﹝29﹞Chilson, P. B., “The retrieval and validation of Doppler velocity estimates from range imaging”, J. Atmos. Ocean. Tech., 21, pp. 1033–1043, 2004.
﹝30﹞Yu, T.-Y., Furumoto, J., and Yamamoto, M., “Clutter suppression for high-resolution atmospheric observations using multiple receivers and multiple frequencies”, Radio Sci., 45, RS4011, https://doi.org/10.1029/2009RS004330, 2010.
﹝31﹞Chen, J.-S. and Zecha, M., “Multiple-frequency range imaging using the OSWIN VHF radar: phase calibration and first results”, Radio Sci., 44, RS1010, https://doi.org/10.1029/2008RS003916, 2009.
﹝32﹞Palmer, R. D., Cheong, B. L., Hoffman, M. W., Fraser, S. J., and López-Dekker, F. J., “Observations of the small-scale variability of precipitation using an imaging radar”, J. Atmos. Ocean. Tech., 22, pp. 1122–1137, https://doi.org/10.1175/JTECH1775.1, 2005.
﹝33﹞Williams, C. R., “Vertical air motion retrieved from dual-frequency profiler observation”, J. Atmos. Ocean. Tech., 29, pp. 1471–1480, 2012.
﹝34﹞Gan, T., Yamamoto, M. K., Hashiguchi, H., Okamoto, H., and Yamamoto, M., “Spectral parameters estimation in precipitation for 50MHz band atmospheric radars”, Radio Sci., 50, pp. 789–803, 2015.
﹝35﹞Chen, J.‐S., P. Hoffmann, M. Zecha, and C.‐H. Hsieh, “Coherent radar imaging of mesosphere summer echoes: Influence of radar beam pattern and tilted structures on atmospheric echo center”, Radio Sci., 43, RS1002, doi:10.1029/2006RS003593.
﹝36﹞曾忠一,大氣衛星遙測學,國立編譯館主編,渤海堂文化事業公司,台北市,民國七十七年。
﹝37﹞Zhang, Z. Y. and S. J. Lin, “Microwave Radiometry and Its Application”, Publishing House of Electronic Industry, Beijing, 1995.
﹝38﹞Kaste, O. C., “The comparison of signal and noise value with measurement value about 35 GHz passive radiometer”, AD-A 040366 , pp. 16-24, 1980.
﹝39﹞Kutuza, B. G., G. K. Zagorin, A. Hornbostel, and A. Schroth, “Physical modeling of passive polarimetric microwave observations of the atmosphere with respect to the third stokes parameter”, Radio Sci., 33, pp. 677–695, 1998.
﹝40﹞Woodman, R. F., “Coherent radar imaging: signal processing and statistical properties”, Radio Sci., 32, pp. 2372–2391, 1997.
﹝41﹞Palmer, R. D., Gopalam, S., Yu, T.-Y., and Fukao, S., “Coherent radar imaging using Capon’s method”, Radio Sci., 33, pp. 1585–1598, 1998.
﹝42﹞Chen, J. S., J. Y. Liu, and Y. H. Chu, “Effects of anisotropy and power spectrum of refractivity irregularities on determination of layer thickness and layer position using the frequency domain interferometry technique”, Radio Sci., 32, pp. 437-451, 1997.
﹝43﹞Capon, J., “High-resolution frequency-wavenumber spectrum analysis”, Proc. IEEE, 57, pp. 1408-1419, 1969.
﹝44﹞Luenberger, D.G., “Linear and nonlinear Programming”, Addison-Wesley, Reading, Mass, 1984.
﹝45﹞Yu, T.-Y., Palmer, R. D., and Hysell, D. L., “A simulation study of coherent radar imaging”, Radio Sci., 35, pp. 1129–1141, 2000.
﹝46﹞Doviak, R. J., and D. S. Zrnic’, “Reflection and scattering formula for anisotropically turbulent air”, Radio Sci., 19, pp. 325–336, 1984.
﹝47﹞Chen, J.-S., Su, C.-L., Chu, Y.-H., Hassenpflug, G., and Zecha, M., “Extended application of a novel phase calibration method of multiple-frequency range imaging to the Chung–Li and MU VHF radars”, J. Atmos. Ocean. Tech., 26, pp. 2488–2500, 2009.
﹝48﹞Yu, T.-Y. and Palmer, R. D., “Atmospheric radar imaging using spatial and frequency diversity”, Radio Sci., 36, pp. 1493–1504, 2001.
﹝49﹞Li, J. and Stoica, P., “An adaptive filtering approach to spectral estimation and SAR imaging”, IEEE T. Signal Proces., 44, pp. 1469–1484, 1996.
﹝50﹞Garbanzo-Salas, M. and Hocking,W. K., “Spectral Analysis comparisons of Fourier-Theory-based methods and Minimum Variance (Capon) methods”, J. Atmos. Sol.-Terr. Phy., 132, pp. 92–100, 2015.
﹝51﹞Williams, C. R., W. L. Ecklund, and K. S. Gage, “Classification of precipitating clouds in the tropics using 915-MHz wind profilers”, J. Atmos. Oceanic Technol., 12, pp. 996–1012, 1995.
﹝52﹞White, A. B., D. J. Gottas, E. T. Strem, F. M. Ralph, and P. J. Neiman, “An automated brightband height detection algorithm for use with Doppler radar spectral moments”, J. Atmos. Oceanic Technol., 19, pp. 687–697, 2002.
﹝53﹞Pan , C. J., K. Krishna Reddy, H. -C. Lai, and, S. -S. Yang, “Role of mixed precipitating cloud systems on the typhoon rainfall”, Ann. Geophys., 28, pp. 11–16, 2010.
﹝54﹞柯人豪,「利用剖風儀雷達分析台灣及帛琉地區的降水融解層特性」,國立中央大學,碩士論文,民國100年。
﹝55﹞陳睿祥,「利用中壢特高頻雷達觀測潭美颱風的降水現象」,國立中央大學,碩士論文,民國103年。
﹝56﹞王寶貫,雲物理學,初版,國立編譯館主編,渤海堂文化事業公司,臺北市,民國八十六年。
﹝57﹞朱延祥、蘇清論:太空測計及操作,2018年10月8日,取自https://irsl.ss.ncu.edu.tw/media/course/。 |