Utility-based joint physical-MAC layer optimization in OFDM

Guocong Song, Ye Li
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引用次数: 41

Abstract

In this paper, joint physical-MAC layer optimization in OFDM systems using adaptive modulation and subcarrier allocation is investigated based on utility theory. Since utility qualifies the level of users' satisfaction derived from the radio resources they occupy, it is ideal for a network optimization metric. We formulate the cross-layer optimization problem as one that maximizes the sum of the utilities over all active users through rate adaptation and dynamic subcarrier allocation with the limited radio resource and time-varying wireless channel constraints. Two effective subcarrier allocation algorithms with low complexity are proposed to solve the constrained optimization problem. Simulation results demonstrate the significant improvement of utility-based cross-layer optimization in OFDM.
OFDM中基于效用的物理层- mac层联合优化
基于效用理论,研究了基于自适应调制和子载波分配的OFDM系统物理层- mac层联合优化问题。由于效用可以从用户占用的无线电资源中获得用户满意度,因此它是理想的网络优化指标。我们将跨层优化问题表述为在有限的无线电资源和时变无线信道约束下,通过速率自适应和动态子载波分配使所有活跃用户的效用总和最大化的问题。针对约束优化问题,提出了两种低复杂度的有效子载波分配算法。仿真结果表明,基于效用的跨层优化在OFDM中有显著的改进。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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