Optimal Power Allocation in Multicarrier Mobile Communications Using Replicator Dynamics

A. Pantoja, C. A. Viteri-Mera
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Abstract

Most of the wireless networks in use today, such as WiFi and LTE, use multicarrier communication techniques. These systems divide the available bandwidth into a set of orthogonal subchannels. Performance in this type of systems is optimized by appropriately assigning power to each subchannel such that a total power constraint is satisfied. In this paper, we propose a dynamic resource allocation scheme based on replicator dynamics to achieve maximum spectral efficiency in a multicarrier system. We demonstrate that the population-based technique obtains the optimal water-filling solution. We illustrate the algorithm application with numerical simulations for a single-user power allocation in a common WiFi scenario. The results show the optimality and low computational cost of the proposed strategy, which can be used in the future to design resource allocation schemes in multiuser settings.
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基于复制器动力学的多载波移动通信优化功率分配
目前使用的大多数无线网络,如WiFi和LTE,都使用多载波通信技术。这些系统将可用带宽分成一组正交子信道。这种类型系统的性能通过适当地为每个子信道分配功率来优化,从而满足总功率约束。为了在多载波系统中实现最大的频谱效率,本文提出了一种基于复制器动力学的动态资源分配方案。我们证明了基于人口的技术获得了最优的充水方案。我们通过在普通WiFi场景下的单用户功率分配的数值模拟来说明该算法的应用。结果表明,所提出的策略具有最优性和较低的计算成本,可用于未来多用户环境下的资源分配方案设计。
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