Scattering of Microwave and Millimeter-wave Signalsin a Sand and Dust Storm

博士 === 國立臺灣大學 === 電信工程學研究所 === 104 === The thesis is composed of three parts. In the first part, a parabolic wave equation (PWE) method is proposed to simulate millimeter-wave propagation in an sand and dust storm (SDS), including the effects of absorption and Rayleigh scattering by dust particles w...

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Main Authors: Mu-Min Chiou, 邱牧民
Other Authors: 江簡富
Format: Others
Language:en_US
Published: 2016
Online Access:http://ndltd.ncl.edu.tw/handle/58667416874683368777
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spelling ndltd-TW-104NTU054350792017-04-24T04:23:47Z http://ndltd.ncl.edu.tw/handle/58667416874683368777 Scattering of Microwave and Millimeter-wave Signalsin a Sand and Dust Storm 沙塵暴中微波及毫米波信號之散射效應 Mu-Min Chiou 邱牧民 博士 國立臺灣大學 電信工程學研究所 104 The thesis is composed of three parts. In the first part, a parabolic wave equation (PWE) method is proposed to simulate millimeter-wave propagation in an sand and dust storm (SDS), including the effects of absorption and Rayleigh scattering by dust particles with given height profiles of particle size distribution and total number density. Three different aperture fields of the transmitting antenna are also chosen to simulate wave attenuation under different sets of SDS parameters. In the second part, a 3D SDS model is proposed, in which the total number density is height dependent and is circularly symmetric in the horizontal plane. The effects of Earth curvature and ground reflection on microwave wave traversing an SDS are studied by using the PWE method and a two-ray model. A time record of microwave attenuation is also simulated and compared with the measurement data to verify the efficacy of the proposed method. In the third part, a PWE-based radar equation is proposed to compute the backscattered power of millimeter-wave in an SDS, in which the height profiles of particle-size distribution and total number density are accounted for. The conventional radar equation is also improved by incorporating the effects of Earth curvature and beam divergence. The improvement of accuracy by using these two radar equations, especially when the specific attenuation is a function of height, is verified by simulations. 江簡富 2016 學位論文 ; thesis 56 en_US
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language en_US
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description 博士 === 國立臺灣大學 === 電信工程學研究所 === 104 === The thesis is composed of three parts. In the first part, a parabolic wave equation (PWE) method is proposed to simulate millimeter-wave propagation in an sand and dust storm (SDS), including the effects of absorption and Rayleigh scattering by dust particles with given height profiles of particle size distribution and total number density. Three different aperture fields of the transmitting antenna are also chosen to simulate wave attenuation under different sets of SDS parameters. In the second part, a 3D SDS model is proposed, in which the total number density is height dependent and is circularly symmetric in the horizontal plane. The effects of Earth curvature and ground reflection on microwave wave traversing an SDS are studied by using the PWE method and a two-ray model. A time record of microwave attenuation is also simulated and compared with the measurement data to verify the efficacy of the proposed method. In the third part, a PWE-based radar equation is proposed to compute the backscattered power of millimeter-wave in an SDS, in which the height profiles of particle-size distribution and total number density are accounted for. The conventional radar equation is also improved by incorporating the effects of Earth curvature and beam divergence. The improvement of accuracy by using these two radar equations, especially when the specific attenuation is a function of height, is verified by simulations.
author2 江簡富
author_facet 江簡富
Mu-Min Chiou
邱牧民
author Mu-Min Chiou
邱牧民
spellingShingle Mu-Min Chiou
邱牧民
Scattering of Microwave and Millimeter-wave Signalsin a Sand and Dust Storm
author_sort Mu-Min Chiou
title Scattering of Microwave and Millimeter-wave Signalsin a Sand and Dust Storm
title_short Scattering of Microwave and Millimeter-wave Signalsin a Sand and Dust Storm
title_full Scattering of Microwave and Millimeter-wave Signalsin a Sand and Dust Storm
title_fullStr Scattering of Microwave and Millimeter-wave Signalsin a Sand and Dust Storm
title_full_unstemmed Scattering of Microwave and Millimeter-wave Signalsin a Sand and Dust Storm
title_sort scattering of microwave and millimeter-wave signalsin a sand and dust storm
publishDate 2016
url http://ndltd.ncl.edu.tw/handle/58667416874683368777
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AT qiūmùmín shāchénbàozhōngwēibōjíháomǐbōxìnhàozhīsànshèxiàoyīng
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