2008
DOI: 10.1109/tvt.2008.919608
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Sensitivity of the System Performance to the Propagation Parameters in LOS Microcellular Environments

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Cited by 18 publications
(21 citation statements)
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“…The transmission rate is assumed to be continuously adapted relative to the CIR in such a manner that the BER goes to zero asymptotically. In (8) assuming that all users are assigned the same bandwidth, 〈C k 〉 = (〈C〉) becomes the same for all users, therefore 〈A e 〉 can be written as …”
Section: Area Spectral Efficiencymentioning
confidence: 99%
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“…The transmission rate is assumed to be continuously adapted relative to the CIR in such a manner that the BER goes to zero asymptotically. In (8) assuming that all users are assigned the same bandwidth, 〈C k 〉 = (〈C〉) becomes the same for all users, therefore 〈A e 〉 can be written as …”
Section: Area Spectral Efficiencymentioning
confidence: 99%
“…For broadband channels carrier frequency needs to be increased [6]. Therefore, future and emerging cellular wireless communication systems beyond the third generation (B3G) will be accommodated at carrier frequencies greater than 2 GHz [6]- [8].…”
mentioning
confidence: 99%
“…SHF radio wave propagation is more vulnerable to the non-line-of-sight condition [28]. Interference modelling for the SHF band are therefore excepted to be different from those of the conventional UHF band.…”
Section: Technical Issues Related To the Future Of Wireless Communicamentioning
confidence: 99%
“…For the conventional cellular wireless system other tier co-channel interferences are neglected, which holds because carrier frequencies are less than 2 GHz, and cell size radius are 1.6 km, (1 mile) and above [4]. However, for emerging cellular wireless communication systems carrier frequencies are greater than 2 GHz, and cell size radii are less than 1 km [2,28,45]. Therefore, there is a need to propose a new co-channel interference model for emerging cellular system, which is one of the aims of this thesis.…”
Section: Interference In Cellular Wireless Systemsmentioning
confidence: 99%
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