DocumentCode :
3579468
Title :
Requirements of power amplifier on super high bit rate massive MIMO OFDM transmission using higher frequency bands
Author :
Jiyun Shen ; Suyama, Satoshi ; Obara, Tatsunori ; Okumura, Yukihiko
Author_Institution :
Res. Labs., NTT DOCOMO, Inc., Yokosuka, Japan
fYear :
2014
Firstpage :
433
Lastpage :
437
Abstract :
To actualize the 5th generation (5G) radio access network with a super high bit rate and high capacity, small cells using both higher frequency bands and Massive MIMO technology are needed. Massive MIMO OFDM transmissions in the 20-GHz band at 20 Gbps that take advantage of higher beamforming (BF) gain have been studied. However, Massive MIMO OFDM causes a high peak to average power ratio (PAPR) because of the large number of subcarriers and multiplexed streams, and thus nonlinear distortion of the power amplifier (PA) degrades the transmission performance. On the other hand, Massive MIMO SC-FDMA may reduce the PAPR by sacrificing the BF gain with subband-precoding matrices. In order to achieve a low-cost Massive MIMO transceiver integrated circuit including a PA in the 20-GHz band, this paper compares the performance of Massive MIMO OFDM and SC-FDMA based on link level simulations with 256 transmitter antennas in the presence of PA nonlinear distortion in order to achieve a low-cost Massive MIMO transceiver integrated circuit including a power amplifier (PA) in the 20-GHz band. Simulation results show that the throughput for Massive MIMO OFDM is higher than that for Massive MIMO SC-FDMA. This paper also presents PA requirements for 20-Gbps Massive MEVIO OFDM in terms of throughput and out-of-band radiation.
Keywords :
5G mobile communication; MIMO communication; OFDM modulation; array signal processing; frequency division multiple access; microwave integrated circuits; microwave power amplifiers; nonlinear distortion; precoding; radio access networks; 5G radio access network; 5th generation radio access network; BF gain; PA nonlinear distortion; PAPR reduction; beamforming gain; bit rate 20 Gbit/s; frequency 20 GHz; frequency band; link level simulations; low-cost massive MIMO transceiver integrated circuit; massive MIMO SC-FDMA; multiplexed streams; nonlinear distortion; out-of-band radiation; peak-to-average power ratio; power amplifier; subband-precoding matrices; super-high-bit rate massive MIMO OFDM transmission; transmission performance; transmitter antennas; Bit rate; MIMO; Nonlinear distortion; Peak to average power ratio; Throughput; Transmitting antennas; Massive MIMO; OFDM; PAPR; SC-FDMA; higher frequency bands; nonlinear distortion; super high bit rate;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Globecom Workshops (GC Wkshps), 2014
Type :
conf
DOI :
10.1109/GLOCOMW.2014.7063470
Filename :
7063470
Link To Document :
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