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Alireza Borhani
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Year
Correlation and spectral properties of vehicle-to-vehicle channels in the presence of moving scatterers
A Borhani, M Pätzold
IEEE Transactions on Vehicular Technology 62 (9), 4228-4239, 2013
862013
A unified disk scattering model and its angle-of-departure and time-of-arrival statistics
A Borhani, M Patzold
IEEE transactions on vehicular technology 62 (2), 473-485, 2013
462013
Modeling of vehicle-to-vehicle channels in the presence of moving scatterers
A Borhani, M P̈tzold
2012 IEEE Vehicular Technology Conference (VTC Fall), 1-5, 2012
442012
A random trajectory approach for the development of nonstationary channel models capturing different scales of fading
A Borhani, GL Stüber, M Pätzold
IEEE Transactions on Vehicular Technology 66 (1), 2-14, 2016
332016
A non-stationary channel model for the development of non-wearable radio fall detection systems
A Borhani, M Pätzold
IEEE Transactions on Wireless Communications 17 (11), 7718-7730, 2018
232018
A non-stationary one-ring scattering model
A Borhani, M Pätzold
2013 IEEE Wireless Communications and Networking Conference (WCNC), 2620-2625, 2013
222013
Time-of-arrival, angle-of-arrival, and angle-of-departure statistics of a novel simplistic disk channel model
A Borhani, M Pätzold
2011 5th International Conference on Signal Processing and Communication …, 2011
222011
A non-stationary multipath fading channel model incorporating the effect of velocity variations of the mobile station
M Pätzold, A Borhani
2014 IEEE Wireless Communications and Networking Conference (WCNC), 182-187, 2014
212014
Modelling, analysis, and simulation of the micro-Doppler effect in wideband indoor channels with confirmation through pendulum experiments
A Abdelgawwad, A Borhani, M Pätzold
Sensors 20 (4), 1049, 2020
112020
Experimental characterization of mobile fading channels aiming the design of non-wearable fall detection radio systems at 5.9 GHz
F Firoozi, A Borhani, M Pätzold
2016 IEEE International Conference on Communication Systems (ICCS), 1-6, 2016
102016
Modelling of non-stationary mobile radio channels incorporating the Brownian mobility model with drift
A Borhani, M Pätzold
Proc. World Congress on Engineering and Computer Science, WCECS13, 2013
92013
A highly flexible trajectory model based on the primitives of Brownian fields—Part I: Fundamental principles and implementation aspects
A Borhani, M Pätzold
IEEE Transactions on Wireless Communications 14 (2), 770-780, 2014
82014
Modelling of non-stationary mobile radio channels using two-dimensional Brownian motion processes
A Borhani, M Pätzold
2013 International Conference on Advanced Technologies for Communications …, 2013
72013
On the spatial configuration of scatterers for given delay-angle distributions
A Borhani, M Pätzold
International Association of Engineers, 2014
62014
A highly flexible trajectory model based on the primitives of Brownian fields—Part II: Analysis of the statistical properties
A Borhani, M Pätzold
IEEE Transactions on Wireless Communications 15 (1), 247-257, 2015
52015
A novel non-stationary channel model utilizing Brownian random paths
A Borhani, M Pätzold
REV Journal on Electronics and Communications 4 (1-2), 2014
52014
Time-Frequency Characteristics of In-Home Radio Channels Influenced by Activities of the Home Occupant
A Borhani, M Pätzold, K Yang
Sensors 19 (16), 3557, 2019
32019
Modelling and analysis of non-stationary mobile fading channels using Brownian random trajectory models
A Borhani
Universitet i Agder/University of Agder, 2014
32014
Fairness maximization and delay analysis for multi-antenna broadcast channels using random beamforming
S Akhlaghi, A Borhani
Computer communications 33 (17), 2116-2124, 2010
32010
A new non-stationary channel model based on drifted brownian random paths
A Borhani, M Pätzold
Transactions on Engineering Technologies: Special Issue of the World …, 2014
22014
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