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A Unified Hollow-Disk Scattering Model: Angle-of-Departure and Time-of-Arrival Statistics
Autori
- Almir Maric
- Odsjek za telekomunikacije, Univerzitet u Sarajevu, Sarajevo, Bosna i Hercegovina
- Odsjek za telekomunikacije, Univerzitet u Sarajevu, Sarajevo, Bosna i Hercegovina
- Mesud Hadzialic
- Odsjek za telekomunikacije, Univerzitet u Sarajevu, Sarajevo, Bosna i Hercegovina
Sažetak
In order to ensure the required wireless communication system performances, it is necessary to have an efficient communication channel model, which is capable of considering all channel degradation factors fairly. In this paper, a unified hollow-disk geometrically-based stochastic channel model is derived. This model assumes that the scatterers are distributed in hollow-disk area around mobile station. Namely, the scatterer distribution is derived as a projection of d-dimensional uniformly distributed scatterers into 2-dimensional space. According to this generalization, derived model is capable of obtaining uniform circular, uniform ring, uniform hollow-disk, unified disk scattering model as special cases, as well as modeling a whole new group of hollow-disk models. Under assumption of single bounce scattering and omnidirectional antennas at transmitter and receiver, joint PDF of angle-of-departure and angle-of-arrival, as well as the joint PDF of time-of-arrival and angle-of-arrival are derived. Subsequently, the corresponding marginal PDFs are provided in closed form. Thus, derived PDFs are suitable for any position of base station, (base station places inside or outside of scattering region). Proposed model is validated by several measured channels. The curve fitting results shown the high flexibility of the proposed model and outperforming results compared to several other geometric scattering models.
Ključne riječi
Unified hollow-disk scattering model (UHDSM), geometric model, angle-of-arrival, angle-of-departure, time-of-arrival, single bounce scattering
Citation
A. Maric, E. Kaljic and M. Hadzialic, “A Unified Hollow-Disk Scattering Model: Angle-of-Departure and Time-of-Arrival Statistics,” in IEEE Transactions on Vehicular Technology. doi: 10.1109/TVT.2019.2904187
Naziv časopisa
IEEE Transactions on Vehicular Technology
Electronic ISSN
Izdavač
IEEE
Impact Factor
4.432 (2017)