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Both full buffer and bursty traffic models are considered.
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The network operates in full buffer, and full CSI accuracy is assumed.
Section 4 presents the full buffer and the finite buffer traffic models as well as KPIs.
Two simple traffic models proposed by the NGMN Alliance, the IEEE, and the 3GPP have been considered: the full buffer and the finite buffer models.
The service type of the users is full buffer and the throughput performance, outage probability, and system energy efficiency will be the evaluation matrices.
This article studies the impact on the design of scheduling algorithms for Orthogonal Frequency Division Multiple Access (OFDMA) systems of two traffic models described in the evaluation methodology proposals from standardization bodies: the full buffer and the finite buffer traffic models.
However, the main drawback of PFS comes from the fact that it considers full buffers and constant bit rate (CBR) streams.
The difference in landscape between cases and controls was smaller using the full buffer areas, and in some cases the consistent trends described above were reversed.
We consider full buffer traffic and assume the inter-source channels to be non-ideal (noisy with Rayleigh fading).
We also assume that the cells have full buffer traffic and the thermal noise is negligible when compared to interference.
In addition, there is no user arrival process in the full buffer model and, therefore, the number of users does not vary.
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