研究目的
Investigating the joint optimization problem of link-layer energy efficiency (EE) and effective capacity (EC) in a Nakagami-m fading channel under a delay-outage probability constraint and an average transmit power constraint.
研究成果
The paper concludes that the proposed optimal power allocation is sufficient for the Pareto optimal set of the original EE–EC MOP. It also proves that the optimum average power level monotonically decreases with the importance weight, but strictly increases with the normalization factor, the circuit power and the power amplifier efficiency. Simulation results confirm the analytical derivations.
研究不足
The technical and application constraints of the experiments, as well as potential areas for optimization, are not explicitly mentioned in the abstract.
1:Experimental Design and Method Selection:
The paper formulates a normalized multi-objective optimization problem (MOP) and transforms it into a single-objective optimization problem (SOP) using the weighted sum method. The SOP is proved to be continuously differentiable and strictly quasiconvex in the optimum average input power.
2:Sample Selection and Data Sources:
The study considers a point-to-point wireless communication link over a Nakagami-m flat-fading channel.
3:List of Experimental Equipment and Materials:
Not explicitly mentioned in the abstract.
4:Experimental Procedures and Operational Workflow:
The weighted quasiconvex tradeoff problem is solved by first using Charnes–Cooper transformation and then applying Karush–Kuhn–Tucker (KKT) conditions.
5:Data Analysis Methods:
Simulation results are used to confirm the analytical derivations and show the effects of fading severeness and transmission power limit on the tradeoff performance.
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