DocumentCode
611554
Title
Performance analysis of channel model simplifications for MIMO OTA LTE UE testing
Author
Landmann, Markus ; Grossmann, M. ; Phatak, Neelam Vijay ; Schneider, C. ; Thomae, R. ; Del Galdo, Giovanni
Author_Institution
Fraunhofer Inst. for Integrated Circuits IIS, Erlangen, Germany
fYear
2013
fDate
8-12 April 2013
Firstpage
1856
Lastpage
1860
Abstract
In the context of MIMO OTA testing, the impact of channel model simplifications on the performance of a 2×2 MIMO LTE system in the closed-loop spatial multiplexing transmission mode is analyzed. Specifically, a measurement based channel model is applied which allows the embedding of application antennas such as the proposed CTIA reference antennas. Three different channel models (a 3-D full, a 2-D full and a 2-D single polarimetric model) are considered. Numerical results on system capacity and throughput simulations are illustrated by several examples. It is found that the relative error in terms of capacity between the 3-D full and the 2-D full polarimetric model is less than 10% for uplink transmissions when the signal-to-noise ratio target is reached with the available transmit power. Further, the results show that when completely neglecting the polarization characteristics of the propagation environment, the throughput and capacity errors can rise up to 50%. In addition, simulation results indicate that the LTE system with CTIA “Nominal” reference antennas outperforms the LTE system with “Good” reference antennas for the uplink transmission in some channel fading environments.
Keywords
Long Term Evolution; MIMO communication; antennas; fading channels; space division multiplexing; 2×2 MIMO LTE system; 2D full polarimetric model; 2D single polarimetric model; 3D full polarimetric model; CTIA reference antennas; LTE system; MIMO OTA LTE UE testing; application antennas; capacity errors; channel fading environments; channel model simplifications; closed-loop spatial multiplexing transmission mode; measurement based channel model; performance analysis; polarization characteristics; signal-to-noise ratio target; Antennas; Channel models; Context; MIMO; Testing; Throughput; CTIA reference antennas; LTE throughput; MIMO OTA; channel model simplifications;
fLanguage
English
Publisher
ieee
Conference_Titel
Antennas and Propagation (EuCAP), 2013 7th European Conference on
Conference_Location
Gothenburg
Print_ISBN
978-1-4673-2187-7
Electronic_ISBN
978-88-907018-1-8
Type
conf
Filename
6546610
Link To Document