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VLSI implementation of MIMO detection using the sphere decoding algorithm

IEEE Journal of Solid-State Circuits · 2005 · Vol. 40(7) · pp. 1566–1577
Andreas BurgM. BorgmannM. WenkM. ZellwegerWolf FïchtnerHelmut Bölcskei

Abstract

Multiple-input multiple-output (MIMO) techniques are a key enabling technology for high-rate wireless communications. This paper discusses two ASIC implementations of MIMO sphere decoders. The first ASIC attains maximum-likelihood performance with an average throughput of 73 Mb/s at a signal-to-noise ratio (SNR) of 20 dB; the second ASIC shows only a negligible bit-error-rate degradation and achieves a throughput of 170 Mb/s at the same SNR. The three key contributing factors to high throughput and low complexity are: depth-first tree traversal with radius reduction, implemented in a one-node-per-cycle architecture, the use of the /spl lscr//sup /spl infin//-instead of /spl lscr//sup 2/-norm, and, finally, the efficient implementation of the enumeration approach recently proposed in . The resulting ASICs currently rank among the fastest reported MIMO detector implementations.

Advanced Wireless Communication TechniquesWireless Communication Networks ResearchError Correcting Code TechniquesMIMOApplication-specific integrated circuitDecoding methodsComputer scienceVery-large-scale integrationThroughputTransceiverTree traversalAlgorithmWireless
Citations
641
FWCI
56.59
field-weighted impact
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25
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References
Achieving near-capacity on a multiple-antenna channel
IEEE Transactions on Communications · 2003 · 2,033 citations
A universal lattice code decoder for fading channels
IEEE Transactions on Information Theory · 1999 · 1,550 citations
On the sphere-decoding algorithm I. Expected complexity
IEEE Transactions on Signal Processing · 2005 · 1,194 citations
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