独立无授权multifire中QoS保证的无线电资源调度

V. Sathya, A. Ramamurthy, M. I. Rochman, M. Ghosh
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引用次数: 3

摘要

最近,话音和数据流量的增加促使蜂窝运营商考虑在未经许可的频谱中部署类似lte的系统,作为满足客户需求的一种选择。这导致了业界提出的非授权频段接入规范,即LTE增强型授权辅助接入(LTE- elaa)、LTE非授权(LTEU)/MulteFire (MF)。在本文中,我们关注的是MF,它是LTE规范的扩展,完全在未经许可的频带中运行。它采用灵活的帧格式,可以自适应地分配上行链路和下行链路资源的子帧,而不像eLAA中使用的固定帧格式。我们研究和评估了MF网络在灵活资源分配方面的潜力,以确保对用户的服务质量(QoS)保证。利用MF的灵活分配,我们提出了一种调度模型,该模型利用满足函数来保证接近截止日期的用户的传输机会(即对接近截止日期的用户进行奖励,对超过截止日期的用户进行惩罚)。与eLAA相比,本文提出的MF调度算法在密集用户部署下具有更好的性能。我们通过在ns-3中执行系统级模拟来证实分析,并在延迟和丢包度量方面证明了分析和模拟之间的良好一致性。
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QoS guaranteed radio resource scheduling in stand-alone unlicensed MulteFire
Increase in voice and data traffic has recently prompted cellular operators to consider deploying LTE-like systems in the unlicensed spectrum as an option to meet their customer requirements. This has led to industry-proposed specifications for unlicensed band access, namely LTE enhanced Licensed Assisted Access (LTE-eLAA), LTE Unlicensed (LTEU)/MulteFire (MF). In this paper we focus on MF, which is an extension to the LTE specification that operates entirely in the unlicensed band. It employs a flexible frame format that enables adaptive allocation of subframes for uplink and downlink resources, unlike the rigid (or) fixed frame format used in eLAA. We study and evaluate the potential of a MF network in terms of its flexible resource allocation to ensure Quality of Service (QoS) guarantees to users. Exploiting MF’s flexible allocation, we propose a scheduling model that utilizes a satisfaction function which guarantees transmission opportunities to users that are close to their deadline (i.e., reward to users transmitting closer to their deadlines and penalty to users transmitting after their deadlines). Compared to eLAA our proposed MF scheduling algorithm achieves better performance for a dense user deployment. We corroborate the analysis by performing system level simulations in ns-3 and demonstrate good agreement between analysis and simulation with respect to latency and packet-drop metrics.
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