A non-stationary mobile-to-mobile channel model allowing for velocity and trajectory variations of the mobile stations

W Dahech, M Pätzold, CA Gutiérrez… - IEEE Transactions on …, 2017 - ieeexplore.ieee.org
In mobile-to-mobile (M2M) communication systems, both the transmitter and the receiver are
moving with a certain velocity, which is usually assumed to be constant over time. However …

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 …, 2016 - ieeexplore.ieee.org
This paper introduces a new approach to developing stochastic nonstationary channel
models, the randomness of which originates from a random trajectory of the mobile station …

Dynamic geometry-based stochastic channel modeling for polarized MIMO systems with moving scatterers

H Radpour, L Minz, SO Park, DY Kim… - arXiv preprint arXiv …, 2023 - arxiv.org
This paper introduces a four-dimensional (4D) geometry-based stochastic model (GBSM) for
polarized multiple-input multiple-output (MIMO) systems with moving scatterers. We propose …

Measurement and analysis of Wi-MAX channel in 3.3 GHz using minimal-ray fading model

SR Bhise, UP Khot - Wireless Networks, 2020 - Springer
This paper presents minimal-ray a sum-of-sinusoids fading model with one direct signal and
multipath signal as minimum as three in number, having phase, attenuation, and time of …

[PDF][PDF] Spectrogram Analysis of Non-Stationary RSE-to-Car Channels Behaviour for Braking Situations

B Herath - 2017 - uia.brage.unit.no
Car-to-car (C2C) and car-to-infrastructure (C2I) communications promise revolutionary
improvements in transportation due to its possibilities to improve the road safety and tra c …