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Numerical results illustrated that the proposed opportunistic mode selection criterion selects either the HD mode or the FD mode depending on the residual self-interference power, which flexibly utilizes respective advantages of HD and FD and achieves a higher throughput than either the FD mode or the HD mode under different residual self-interference power regimes.
At this point, the opportunistic mode selection criterion will select the HD mode which can achieve a higher throughput than FD.
Simulation results show that the proposed opportunistic mode selection criterion can select an appropriate relaying mode to achieve a higher throughput than either the FD mode or the HD mode under different residual self-interference power regimes.
Therefore, an opportunistic HD/FD relaying mode selection criterion is designed as follows: ST selects the FD mode or the HD mode based on the residual self-interference power.
As other HD/FD relaying mode selection criterion is not seen in literature, the proposed opportunistic HD/FD relaying mode selection criterion is compared with the HD or FD mode to show its merit.
However, it still approaches either in the FD mode or in the HD mode, which further validates the opportunistic mode selection criterion.
Similar(46)
In this section, we provide several mode selection criteria similar to those of antenna grouping.
We introduce several mode selection criteria as well as a low complexity criterion which is derived from a low complexity antenna grouping algorithm.
Efforts are currently being made to also model localized but functionally important motions for protein binding pockets and protein-protein interfaces using relevant normal mode selection criteria and implicit rotamer basin creation.
In this paper, we propose a multiple relaying modes selection criterion to maximize the sum-capacity.
We note that our model selection criterion (Bayesian information criterion [BIC]) undercalled the number of clones in up to 13 of 100 runs (cna-mode).
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