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Titlebook: 5G Mobile Communications; Wei Xiang,Kan Zheng,Xuemin (Sherman) Shen Book 2017 Springer International Publishing Switzerland 2017 5G mobile

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Aisha K. Gill,Carolyn Strange,Karl Robertsn bring at least ten-fold improvements in area throughput by increasing the spectral efficiency (bit/s/Hz/cell), while using the same bandwidth and density of base stations as in current networks. These extraordinary gains are achieved by equipping the base stations with arrays of a hundred antennas
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Aisha K. Gill,Carolyn Strange,Karl Robertss. In this chapter, we introduce the key technologies of mmWave communications based on pioneering researches. Channel measurement and modeling as a fundamental issue is presented in Sect. 2. Beam-tracking technique based on large-scale antenna array is studied in Sect. 3. Network architecture, part
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‘Anticipating‘ the 2011 Arab Uprisingse context of 5G. After a brief description of some adaptations of CP-OFDM, FBMC combined with offset-QAM is considered, pointing out the crucial issue of subchannel equalization to compensate for the absence of cyclic prefix. Implementation has to be carried out in the frequency domain, in order to
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‘Anticipating‘ the 2011 Arab Uprisingsbandwidth by packing symbols closer in time, at the cost of introducing intersymbol interference (ISI). We begin with the Euclidean distance properties of bandwidth efficient pulses at FTN rates and describe receivers that mitigate the severe ISI. The FTN achievable information rate is compared with
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https://doi.org/10.1057/9781137294739g (OFDM) has shown difficulty in fulfilling all demanding requirements. This chapter presents Generalized Frequency Division Multiplexing (GFDM) as a strong waveform candidate for future wireless communications systems which can be combined with several techniques such as precoding or Offset Quadrat
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