Paulraj AJ, Gore DA, Nabar RU, Blcskei H (2004) An overview of MIMO communications—a key to gigabit wireless. Proc IEEE 92(2):198–218
Rusek F, Persson D, Lau B, Larsson E, Marzetta T, Edfors O, Tufvesso F (2013) Scaling up MIMO: opportunities and challenges with very large arrays. IEEE Signal Process Mag 30(1):40–60
Lin Y, Lee H, Woh M, Harel Y, Mahlke S, Mudge T, Chakrabarti C, Flautner K (2007) SODA: a high-performance DSP architecture for software-defined radio. IEEE MICRO 27(1):114–123
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Paulraj AJ, Gore DA, Nabar RU, Blcskei H (2004) An overview of MIMO communications—a key to gigabit wireless. Proc IEEE 92(2):198–218
Rusek F, Persson D, Lau B, Larsson E, Marzetta T, Edfors O, Tufvesso F (2013) Scaling up MIMO: opportunities and challenges with very large arrays. IEEE Signal Process Mag 30(1):40–60
Lin Y, Lee H, Woh M, Harel Y, Mahlke S, Mudge T, Chakrabarti C, Flautner K (2007) SODA: a high-performance DSP architecture for software-defined radio. IEEE MICRO 27(1):114–123
Yang C-H, Markovic D (2008) A multi-core sphere decoder VLSI architecture for MIMO communications. Global telecommunications conference, pp 1–6
Wu D, Eilert J, Liu D (2011) Implementation of a high-speed MIMO soft-output symbol detector for software defined radio. J Signal Process Syst 63(1):27–37
Tan K, Liu H, Zhang J, Zhang Y, Fang J, Voelke GM (2011) Sora: high-performance software radio using general-purpose multi-core processors. Commun ACM 54(1):99–107
Wu M, Sun Y, Gupta S, Cavallaro J (2011) Implementation of a high throughput soft MIMO detector on GPU. J Signal Process Syst 64(2):123–136
Nylanden T, Janhunen J, Silven O, Juntti M (2010) A GPU implementation for two MIMO-OFDM detectors. International conference on embedded computer systems, pp 293–300
Falcao G, Silva V, Sousa L (2009) How GPUs can outperform ASICs for fast LDPC decoding. International conference of supercomputing, pp 123–136
Innovative Computing Laboratory, University Tennessee, Knoxville (2009) MAGMA: Matrix algebra on GPU and multicore architectures. Available at http://icl.cs.utk.edu/magma/index.html
EM Photonics, Inc (2010) CULA Tools - GPU accelerated LAPACK. Available at http://www.culatools.com
MathWorks, Inc. (2011) Communications System Toolbox - Design and simulate the physical layer of communication systems. http://www.mathworks.es/products/communications/
ITPP-C++ Library for Mathematical, signal processing, speech processing, and communications classes and functions. Available at http://itpp.sourceforge.net
Roger S, Ramiro C, Gonzalez A, Almenar V, Vidal AM (2012) An efficient GPU implementation of fixed-complexity sphere decoders for MIMO wireless systems. Integr Comput-Aided Eng 19(4):341–350
Ramiro C, Roger S, Gonzalez A, Almenar V, Vidal AM (2013) Multi-core implementation of a fixed-complexity tree-search detector for MIMO communications. J Supercomput 65(3):1010–1019
Garcia VM, Gonzalez A, Gonzalez C, Martinez-Zaldivar FJ, Ramiro C, Roger S, Vidal AM (2011) The impact of GPU/multicore in signal processing: a quantitative approach. Waves 3:96–106
Roger S, Ramiro C, Gonzalez A, Almenar V, Vidal AM (2012) Fully parallel GPU implementation of a fixed-complexity soft-output MIMO detector. IEEE Trans Veh Technol 61(8):3796–3800
Domene F, Roger S, Ramiro C, Piero G, Gonzalez A (2012) A reconfigurable GPU implementation for Tomlinson–Harashima precoding. 37th international conference on acoustics, Kyoto, Japan
Domene F, Roger S, Ramiro C, Piero G, Gonzalez A (2012) Efficient implementation of multiuser precoding algorithms on GPU for MIMO-OFDM systems. XXVII Simposium Nacional de la Unin Cientfica Internacional de Radio, Elche, Spain
Ramiro C, Simarro Haro MA, Martinez-Zaldivar MJ, Vidal AM, Gonzalez A (2013) A GPU implementation of an iterative receiver for energy saving MIMO ID-BICM systems. J Supercomput. doi: 10.1007/s11227-013-1081-x
Larsson EG (2009) MIMO detection methods: how they work [lecture notes]. Signal Process Mag IEEE 26(3):91–95. doi: 10.1109/MSP.2009.932126
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