Title :
Interference study for cognitive LTE-femtocell in TV white spaces
Author :
Zhao Zhao ; Schellmann, Malte ; Boulaaba, Houcine ; Schulz, Egon
Author_Institution :
IKT, Leibniz Univ. Hannover, Hannover, Germany
Abstract :
As one of the future indoor coverage solutions, this paper considers the cognitive Femtocell for LTE system [1], which can opportunistically access the TV white spaces. The paper selects a typical residential building for study case and uses the ray tracing method to obtain the channel profile in european TV bands. Through computer simulation, we demonstrate that cognitive LTE-Femtocell can potentially provide excellent indoor coverage. Additionally, the power leakage of every Femto-equipped building is obtained by simulation and the system performance predictions are given based on the assumptions of the Femtocell interference as shot-noise process. Two interference-avoiding antenna schemes are proposed and compared in this paper. The simulation results have shown that both schemes are very effective in managing the Femto interference, thus giving a reference for the future deployment of cognitive Femto in TV bands.
Keywords :
Long Term Evolution; antennas; building management systems; cognitive radio; femtocellular radio; interference suppression; radiofrequency interference; ray tracing; television; TV white space; cognitive LTE-femtocell; computer simulation; femto-equipped building; femtocell interference study; indoor coverage solution; interference-avoiding antenna scheme; power leakage; ray tracing method; residential building; shot-noise process; system performance prediction; Antennas; Buildings; Europe; FCC; Interference; Switches; TV;
Conference_Titel :
Telecom World (ITU WT), 2011 Technical Symposium at ITU
Conference_Location :
Geneva
Print_ISBN :
978-1-4577-1148-0
Electronic_ISBN :
978-92-61-13681-9