IEEE Transactions on Wireless Communications · 2016 · 203 citations · 47 references
Mimo SystemMillimeter Wave TechnologyEngineeringMimo ProcessingFull DuplexMultiuser MimoMulti-carrier CommunicationAntennaMillimeter WaveMulti-stream Mimo CommunicationComputer EngineeringDigital BeamformingChannel EstimationBeamformingPower ConsumptionSignal Processing
Millimeter communication systems use large antenna arrays to provide good average received power and to take advantage of multi-stream MIMO communication. Unfortunately, due to power consumption in the analog front-end, it is impractical to perform beamforming and fully digital precoding at baseband. Hybrid precoding/combining architectures have been proposed to overcome this limitation. The hybrid structure splits the MIMO processing between the digital and analog domains, while keeping the performance close to that of the fully digital solution. In this paper, we introduce and analyze several algorithms that efficiently design hybrid precoders and combiners starting from the known optimum digital precoder/combiner, which can be computed when perfect channel state information is available. We propose several low complexity solutions which provide different trade-offs between performance and complexity. We show that the proposed iterative solutions perform better in terms of spectral efficiency and/or are faster than previous methods in the literature. All of them provide designs which perform close to the known optimal digital solution. Finally, we study the effects of quantizing the analog component of the hybrid design and show that even with coarse quantization, the average rate performance is good.
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Millimeter Wave Mobile Communications for 5G Cellular: It Will Work!
Theodore S. Rappaport, Shu Sun, Rimma Mayzus et al. · IEEE Access · 2013 · 7.3K citations · Full text
Numerical methods for least squares problems
Choice Reviews Online · 1996 · 3.1K citations
Numerical Analysis, Mathematical Programming, Engineering +16