Statistical Characterization of \kappa\mu Shadowed Fading
This paper investigates a natural generalization of the κ - μ fading channel in which the line-of-sight (LOS) component is subject to shadowing. This fading distribution has a clear physical interpretation and good analytical properties and unifies the one-side Gaussian, Rayleigh, Nakagami- m, Ricia...
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| Vydané v: | IEEE transactions on vehicular technology Ročník 63; číslo 2; s. 518 - 526 |
|---|---|
| Hlavný autor: | |
| Médium: | Journal Article |
| Jazyk: | English |
| Vydavateľské údaje: |
New York, NY
IEEE
01.02.2014
Institute of Electrical and Electronics Engineers |
| Predmet: | |
| ISSN: | 0018-9545, 1939-9359 |
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| Abstract | This paper investigates a natural generalization of the κ - μ fading channel in which the line-of-sight (LOS) component is subject to shadowing. This fading distribution has a clear physical interpretation and good analytical properties and unifies the one-side Gaussian, Rayleigh, Nakagami- m, Rician, κ - μ, and Rician shadow fading distributions. The three basic statistical characterizations, i.e., probability density function (pdf), cumulative distribution function (cdf), and moment-generating function (mgf), of the κ - μ shadowed distribution are obtained in closed form. Then, it is also shown that the sum and maximum distributions of independent but arbitrarily distributed κ - μ shadowed variates can be expressed in closed form. This set of new statistical results is finally applied to modeling and analysis of several wireless communication systems, e.g., the proposed distribution has applications to land mobile satellite (LMS) communications and underwater acoustic communications (UAC). |
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| AbstractList | This paper investigates a natural generalization of the κ - μ fading channel in which the line-of-sight (LOS) component is subject to shadowing. This fading distribution has a clear physical interpretation and good analytical properties and unifies the one-side Gaussian, Rayleigh, Nakagami- m, Rician, κ - μ, and Rician shadow fading distributions. The three basic statistical characterizations, i.e., probability density function (pdf), cumulative distribution function (cdf), and moment-generating function (mgf), of the κ - μ shadowed distribution are obtained in closed form. Then, it is also shown that the sum and maximum distributions of independent but arbitrarily distributed κ - μ shadowed variates can be expressed in closed form. This set of new statistical results is finally applied to modeling and analysis of several wireless communication systems, e.g., the proposed distribution has applications to land mobile satellite (LMS) communications and underwater acoustic communications (UAC). This paper investigates a natural generalization of the Kappa - mu fading channel in which the line-of-sight (LOS) component is subject to shadowing. This fading distribution has a clear physical interpretation and good analytical properties and unifies the one-side Gaussian, Rayleigh, Nakagami- m , Rician, Kappa - mu , and Rician shadow fading distributions. The three basic statistical characterizations, i.e., probability density function (pdf), cumulative distribution function (cdf), and moment-generating function (mgf), of the Kappa - mu shadowed distribution are obtained in closed form. Then, it is also shown that the sum and maximum distributions of independent but arbitrarily distributed Kappa - mu shadowed variates can be expressed in closed form. This set of new statistical results is finally applied to modeling and analysis of several wireless communication systems, e.g., the proposed distribution has applications to land mobile satellite (LMS) communications and underwater acoustic communications (UAC). |
| Author | Paris, Jose F. |
| Author_xml | – sequence: 1 givenname: Jose F. surname: Paris fullname: Paris, Jose F. email: paris@ic.uma.es organization: Dept. of Commun. Eng., Univ. of Malaga, Málaga, Spain |
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| Keywords | Acoustic communication wireless communications Line of sight propagation Rician shadowed one-side Gaussian underwater acoustic communications (UAC) Wireless telecommunication Satellite telecommunication Rice fading Shadow Satellite Rician Nakagami-m Kappa mu distribution Modeling Probability density function Distribution function Submarine telecommunication Rayleigh Fading channels Mobile radiocommunication Generating function Land mobile radio Statistical method κ—μ Telecommunication system Mobile satellite communication land mobile satellite (LMS) Underwater acoustics Shadowing Least mean squares methods |
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| References | cogliatti (ref4) 2012; 16 sofotasios (ref10) 2011 ref15 ref14 ref20 ref11 ref21 ref2 ref1 ref19 cohen (ref22) 2007 ref8 ruiz-vega (ref12) 2012 simon (ref13) 2005 ref7 srivastava (ref18) 1985 ref9 gradshteyn (ref16) 2007 ref3 ref6 ref5 erd lyi (ref17) 1954 |
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| Snippet | This paper investigates a natural generalization of the κ - μ fading channel in which the line-of-sight (LOS) component is subject to shadowing. This fading... This paper investigates a natural generalization of the Kappa - mu fading channel in which the line-of-sight (LOS) component is subject to shadowing. This... |
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| SubjectTerms | Analytical models Applied sciences Channels Communication satellites Equipments and installations Exact sciences and technology Exact solutions Fading Fading channels Gaussian kappa{ - }\mu land mobile satellite (LMS) Mathematical analysis Mobile radiocommunication systems Nakagami- m one-side Gaussian Probability density functions Radiocommunications Random variables Rayleigh Rayleigh channels Rician Rician channels Rician shadowed Satellite telecommunications. Space telecommunications Shadow mapping Shadows Systems, networks and services of telecommunications Telecommunications Telecommunications and information theory Transmission and modulation (techniques and equipments) underwater acoustic communications (UAC) Wireless communication wireless communications |
| Title | Statistical Characterization of \kappa\mu Shadowed Fading |
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