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Joint Allocation of Resource Blocks, Power, and Energy-Harvesting Relays in Cellular Networks

机译:蜂窝网络中资源块,功率和能量收集中继的联合分配

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摘要

Relaying is a promising technique in cellular networks for improving system capacity and coverage. To facilitate the deployment of relays in remote areas without ready access to the electrical grid, energy-harvesting relays may be deployed. Energy-harvesting has been studied extensively for sensor networks, but it is still an open problem for cellular networks. In this paper, we study the problem of the joint allocation of orthogonal frequency division multiplexing access resource blocks and transmission power to users in a cellular network with energy-harvesting relays. The energy-harvesting process is stochastically described by a time-varying Poisson process. We propose a new metric called survival probability as the selection criteria for an energy-harvesting relay to support data transmissions. We propose a survival probability-based resource allocation (SPRA) algorithm. The algorithm solves the joint problem of resource block allocation, power control, and associating relays to users in a cellular network. We show the achievable data rates of SPRA for different energy harvesting rates.
机译:中继是蜂窝网络中用于改善系统容量和覆盖范围的一种有前途的技术。为了便于将继电器部署在偏远地区而无法立即访问电网,可以部署能量收集继电器。能量收集已广泛用于传感器网络,但对于蜂窝网络而言,这仍然是一个未解决的问题。在本文中,我们研究了带有能量收集中继的蜂窝网络中正交频分复用访问资源块和向用户的传输功率的联合分配问题。随时间变化的泊松过程随机地描述了能量收集过程。我们提出了一种称为生存概率的新度量,作为能量收集继电器支持数据传输的选择标准。我们提出了一种基于生存概率的资源分配(SPRA)算法。该算法解决了蜂窝网络中资源块分配,功率控制以及将中继与用户关联的联合问题。我们显示了不同能量收集速率下SPRA可获得的数据速率。

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