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- W2889867823 abstract "Increasing energy consumption is a result of therapid growth in cellular communicationtechnologies and a massiveincrease in the number of mobile terminals (MTs) and communicationsites. In cellular communication networks, energy efficiency (EE)and spectral efficiency (SE) are two of the most important criteriaemployed to evaluate the performance of networks. A compromisebetween these two conflicting criteria is therefore required, inorderto achieve the best cellular network performance. Fractionalfrequency reuse (FFR), classed as either strict FFR or softfrequency reuse (SFR), is an intercell interference coordination(ICIC) technique applied to manage interference when more spectrumis used, and to enhance the EE. A conventional cellular model’sdownlink is designed as a reference in the presence of inter-cellinterference (ICI) and a general fading environment.Energy-efficient cellular models,such as cell zooming, cooperativeBSs and relaying models are designed, analysed and compared withthe reference model, in order to reduce network energy consumptionwithout degrading the SE. New mathematical models are derivedherein to design a distributed antenna system (DAS), in order toenhance the system’s EE and SE. DAS is designed in the presence ofICI and composite fading and shadowing with FFR. A coordinatemulti-point (CoMP)technique is applied, using maximum ratiotransmission (MRT) to serve the mobile terminal (MT), with alldistributed antenna elements (DAEs), transmit antenna selection(TAS) being applied to select the best DAE and general selectioncombining (GSC) being applied to select more than one DAE.Furthermore, a Cloud radio access network (C-RAN) is designed andanalysed with two different schemes, using the high-power node(HPN) and a remoteradio head (RRH), in order to improve the EE andSE of the system. Finally, a trade-off between the two conflictingcriteria, EE and SE, is handled carefully in this thesis, in orderto ensure a green cellular communication network." @default.
- W2889867823 created "2018-09-27" @default.
- W2889867823 creator A5052890982 @default.
- W2889867823 date "2016-01-01" @default.
- W2889867823 modified "2023-09-26" @default.
- W2889867823 title "Design and analysis of green mobile communication networks" @default.
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