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Trade-off between cell throughput and average utility.
While PDCCH limitation causes only marginal loss of cell throughput with full buffer traffic and there is also no evident relationship between cell throughput and the number of users scheduled per TTI [15], VoIP capacity in E-UTRAN is directly proportional to the number of users scheduled simultaneously in each TTI [13, 14].
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This also means that MaxTBS-scheduling always leads to a higher cell throughput than proportional-fair scheduling if we consider the same snapshot for both schedulers, reflecting the well known tradeoff between system capacity (defined as cell throughput) and fairness of data rate allocation (see, e.g., [10]).
The proposed scheme gives high cell throughput and keeps fairness between users to a high extent while it gives users with VoLTE application running in their UEs higher priority.
For cellular systems, two performance metrics namely average cell throughput and user throughput at the cell edges are vital.
As shown, this trade-off between utility and cell throughput can be directly adjusted by the penalty parameter of the CARA heuristic introduced in (11).
Similarly other tradeoffs between fairness and cell throughput can be obtained by varying, or by engineering other utility functions with desired slopes.
Figure 7 Fairness and cell throughput.
Figure 7 shows fairness and cell throughput.
The cell throughput results are in the range between 6.3 Mbps and 1.01 Mbps, with an average of 8.6 Mbps (which is also the result of [9]).
The average cell-edge throughput and system throughput (i.e., cell throughput in this simulation) are presented in Figure 9 when.
More suggestions(19)
between cell shape and
between cell migration and
between cell growth and
between cell type and
between cell metabolism and
between cell culture and
between cell division and
between cell polarity and
between cell proliferation and
between cell cycle and
between cell size and
between cell death and
between system throughput and
between cell loss and
between cell differentiation and
between cell surface and
between cell harvest and
between cell viability and
between cell fate and
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