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Combined convolutional codes and M-ary phase modulation have been shown to be more power efficient than uncoded coherent phase modulation at equal or better spectral efficiency.

Ultra dense small cell deployments and a very large number of applications are expected to be the essential aspects of the newly emerging 5thgeneration (5G) wireless communication system.

Ultra dense small cell deployments and a very large number of applications are expected to be the essential aspects of the newly emerging 5th generation (5G) wireless communication system.

The Storm system is currently emerging as an important choice for performing parallel and distributed stream pro- cessing operations.

5G systems are expected to utilize flexible time division duplex (TDD) to cater for instantaneous user traffic demands.

Adaptive modulation techniques have the potential to substantially increase the spectrum efficiency and to provide different levels of service to users, both of which are considered important for t

Information Centric Network (ICN) proposals, have recently emerged to define new network architectures where content, and not its location, becomes the core of the communication model.

Recently, a variant of network coding at the physical layer named wireless network coding (WNC) has gained much attention due to it's simplicity and capacity improvement of a bi-directional link.

The performance of cross-coupled, M-ary Quadrature Amplitude Modulation (QAM) systems is determined when bandwidth efficient trellis codes are bat interference.

Various m-ary digital modulation schemes [such as coherent phaseshift keying ( C P S K ) , differentially coherent phase-shift keying ( D C P S K ) , frequency-shift keying (FSK), and others] are c

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