Title :
Feedback Generation for CoMP Transmission in Unsynchronized Networks with Timing Offset
Author :
Iwelski, Stanislaus ; Badic, Biljana ; Bai, Zhiyuan ; Balraj, Rajarajan ; Kuo, Chia-Chen ; Majeed, Erfan ; Scholand, Tobias ; Bruck, Guido ; Jung, Peter
Author_Institution :
Dept. of Commun. Technol., Univ. of Duisburg-Essen, Duisburg, Germany
Abstract :
Coordinated multipoint (CoMP) transmission is a promising technique in long term evolution (LTE) systems to provide coverage and broadband communication for cell edge user equipments (UEs). However, as signals from multiple transmitters may reach the UE at different times, CoMP networks might experience high time offsets, leading to significant performance loss in closed-loop transmission. In this paper we show that spacing between reference signals (RSs) imposes a phase offset on the transmit covariance matrix in presence of timing offset (TO), affecting the feedback generation. The promised advantages of closed-loop CoMP transmission vanish in presence of TO due to improper precoding matrix index (PMI) selection. Keeping the phase shift close to zero, reliable PMI selection can be guaranteed and as a result near optimum performance is achieved for closed-loop CoMP transmission in unsynchronized networks with TO present.
Keywords :
Long Term Evolution; covariance matrices; precoding; CoMP networks; CoMP transmission; LTE systems; PMI selection; RS; UE; broadband communication; cell edge user equipments; closed loop transmission; coordinated multipoint transmission; covariance matrix transmission; feedback generation; long term evolution; precoding matrix index; reference signals; timing offset; unsynchronized networks; Covariance matrices; OFDM; Ports (Computers); Quadrature amplitude modulation; Synchronization; Transmitting antennas; Coordinated multi-point transmission; timing offset; unsynchronized networks;
Journal_Title :
Communications Letters, IEEE
DOI :
10.1109/LCOMM.2014.021814.132478