TY - GEN
T1 - Modeling the utilization of a multi-tenant band in 3GPP LTE system with Licensed Shared Access
AU - Gudkova, Irina
AU - Markova, Ekaterina
AU - Masek, Pavel
AU - Andreev, Sergey
AU - Hosek, Jiri
AU - Yarkina, Natalia
AU - Samouylov, Konstantin
AU - Koucheryavy, Yevgeni
PY - 2016/10/1
Y1 - 2016/10/1
N2 - Fueled by the rapid growth of mobile services, the actual demand for efficient sharing of available but underutilized frequency spectrum puts pressure on the responsible players (ITU, ETSI) to rethink the feasible ways of allocating wireless spectrum. Today, the LSA regulatory framework is considered to be an important enabler for optimized spectrum sharing between the incumbent and the LSA licensee (e.g., mobile network operator). At any point of time, the frequency bands can be utilized by only a single party, and the spectrum owner has priority in its usage at all times. In this paper, we introduce a mathematical and a system model for the multi-tenant band within the 3GPP LTE cellular network. As the main output of this work, the obtained numerical results for one multi-tenant band are produced. Said band is assumed to be intolerant to traffic delay and our results include the blocking probability as well as the mean downlink TX power of the eNodeB.
AB - Fueled by the rapid growth of mobile services, the actual demand for efficient sharing of available but underutilized frequency spectrum puts pressure on the responsible players (ITU, ETSI) to rethink the feasible ways of allocating wireless spectrum. Today, the LSA regulatory framework is considered to be an important enabler for optimized spectrum sharing between the incumbent and the LSA licensee (e.g., mobile network operator). At any point of time, the frequency bands can be utilized by only a single party, and the spectrum owner has priority in its usage at all times. In this paper, we introduce a mathematical and a system model for the multi-tenant band within the 3GPP LTE cellular network. As the main output of this work, the obtained numerical results for one multi-tenant band are produced. Said band is assumed to be intolerant to traffic delay and our results include the blocking probability as well as the mean downlink TX power of the eNodeB.
KW - Bit rate
KW - Markov processes
KW - Mathematical model
KW - Numerical analysis
KW - Probability distribution
KW - Quality of service
U2 - 10.1109/ICUMT.2016.7765343
DO - 10.1109/ICUMT.2016.7765343
M3 - Conference contribution
SP - 119
EP - 123
BT - 2016 8th International Congress on Ultra Modern Telecommunications and Control Systems and Workshops (ICUMT)
PB - IEEE
T2 - International Conference on Ultra Modern Telecommunications and Control Systems and Workshops
Y2 - 1 January 1900
ER -