Silicon complexity for maximum likelihood MIMO detection using spherical decoding

被引:92
作者
Garrett, D [1 ]
Davis, L
ten Brink, S
Hochwald, B
Knagge, G
机构
[1] Beceem Commun, Santa Clara, CA 95054 USA
[2] Lucent Technol, Bell Labs, Holmdel, NJ 07733 USA
[3] Lucent Technol, Bell Labs, N Ryde, NSW, Australia
[4] Lucent Technol, Bell Labs, Murray Hill, NJ 07974 USA
[5] Univ Newcastle, Newcastle, NSW 2308, Australia
关键词
HSDPA; maximum likelihood; MIMO; spherical detection;
D O I
10.1109/JSSC.2004.831454
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
Multiple-input multiple-output (MIMO) wireless systems increase spectral efficiency by transmitting independent signals on multiple transmit antennas in the same channel bandwidth. The key to using MIMO is in building a receiver that can decorrelate the spatial signatures on the receiver antenna array. Original MIMO detection schemes such as the vertical Bell Labs layered space-time (VBLAST) detector use a nulling and cancellation process for detection that is sub-optimal as compared to constrained maximum likelihood (ML) techniques. This paper presents a silicon complexity analysis of ML search techniques for MIMO as applied to the HSDPA extension of UMTS. For MIMO constellations of 4 x 4 QPSK or lower, it is possible to perform an exhaustive ML search in today's silicon technologies. When the search complexity exceeds technology limits for high complexity MIMO constellations, it is possible to apply spherical decoding techniques to achieve near-ML performance. The paper presents an architecture for a 4 x 4 16QAM MIMO spherical decoder with soft outputs that achieves 38.8 Mb/s over a 5-MHz channel using only approximately 10 mm(2) in a 0.18-mum CMOS process.
引用
收藏
页码:1544 / 1552
页数:9
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