DocumentCode :
3781273
Title :
Coefficient adjustment matrix inversion approach and architecture for massive MIMO systems
Author :
Xiao Liang;Chuan Zhang;Shugong Xu;Xiaohu You
Author_Institution :
National Mobile Communications Research Laboratory, Southeast University, Nanjing, China
fYear :
2015
Firstpage :
1
Lastpage :
4
Abstract :
Thanks to hundreds of antennas, spectral efficiency of massive multiple-input multiple-output (MIMO) systems has drastically increased. However, the resulting huge dimension of matrices involved in massive MIMO MMSE detection causes prohibitive complexity. Although large scale matrix inversion with Neumann approximation achieves good tradeoff between complexity and accuracy for i.i.d. massive MIMO channel, its convergency speed degrades seriously for correlated massive MIMO channel. To this end, in this paper the matrix inversion approach based on coefficient adjustment (CA), which is more adaptable to correlated channel with higher throughput, is proposed. The corresponding hardware architecture is also given. FPGA results have shown that for 4 × 32 MIMO system, the proposed architecture can achieve 69.4% higher frequency with only 49.1% hardware cost compared to Cholesky decomposition method. CA approach can also achieve 37.9% higher throughput than Neumann scheme for correlated channel on average.
Keywords :
"MIMO","Complexity theory","Computer architecture","Hardware","Throughput","Bit error rate","Field programmable gate arrays"
Publisher :
ieee
Conference_Titel :
ASIC (ASICON), 2015 IEEE 11th International Conference on
Print_ISBN :
978-1-4799-8483-1
Electronic_ISBN :
2162-755X
Type :
conf
DOI :
10.1109/ASICON.2015.7517048
Filename :
7517048
Link To Document :
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