Cuiyu Kong, Yen-Wen Chen, I-Hsuan Peng
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引用次数: 3

摘要

由于移动设备尺寸的不断缩小和电池的限制,无线宽带网络的能源效率变得越来越重要。因此,如何节约用户设备的功耗是实际网络应用中的一个重要问题。同时,在频谱有限、系统业务负荷大的情况下,由于对高服务质量(QoS)和高数据速率的追求,频谱效率也变得非常重要。本文提出并比较了LTE上行系统中两种极端的无线资源分配方案:面向功率节省(PS)的方案和面向频谱节省(SS)的方案。该方案最大限度地降低了无线电资源分配的功耗。相反,面向SS的方案考虑无线电资源的有效利用,以最大限度地提高系统吞吐量。虽然调度目的不同,但两种方案都考虑了LTE网络中信道条件的变化、QoS的满足和连续资源块(resource blocks, RB)等问题。对系统吞吐量、功耗和传输质量(如丢包率)的仿真结果进行了比较和分析。由于这两种方案分别以最小的功耗和最大的频谱利用率为设计目标,实验结果可作为自适应调度方案研究的参考边界。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Referential bounds analysis of uplink radio resource scheduling in LTE network
Energy efficiency in wireless broadband network is increasingly crucial because of the shrinking size and the battery constraint of mobile devices. Therefore, to save the power of user equipment (UE) is an important issue in practical network applications. Meanwhile, under the condition of limited spectrum and heavy traffic load in system, spectrum efficiency is also important resulting from the pursuits of high quality of service (QoS) and high data rate. In this paper, we propose and compare two extreme radio resource allocation schemes: the power-saving (PS) oriented scheme and the spectrum-saving (SS) oriented scheme in LTE uplink system. The PS oriented scheme minimizes the power consumption in allocating radio resource. On the contrary, the SS oriented scheme considers the efficient radio resource utilization to maximize the system throughput. Although the scheduling purposes are different, both schemes consider the changeable channel condition, QoS satisfaction, and continuous resource blocks (RB) for uplink scheduling in LTE network. Simulation results of system throughput, power consumption, and transmission quality (e.g. packet dropping rate) are compared and analyzed. As these two schemes are designed in minimizing the power consumption and maximizing the spectrum utilization, respectively, the experimental results can be applied as the referential bounds for the study of adaptive scheduling schemes.
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