LTE downlink scheduler with reconfigurable traffic prioritization

H. Akyildiz, Beste Akkuzu, Ibrahim Hökelek, H. A. Çırpan
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引用次数: 5

Abstract

An explosive growth in the number of mobile users necessitates higher capacities in the cellular network infrastructure. Emerging real-time services such as VoIP and Video on Demand have stringent delay requirements. Long Term Evolution (LTE) has been developed to provide higher data rates, lower latency for real-time services through Differentiated Services (DiffServ) support, and lower cost of operation with its all-IP based architecture. The LTE MAC scheduler plays a crucial role to achieve these objectives by distributing available radio resources among User Equipments (UEs). In this paper, a novel LTE downlink scheduling algorithm taking both channel qualities and traffic types of UEs into account is proposed. First, incoming traffic is classified into real-time and nonreal-time flows which are inserted into a priority list according to traffic types and channel qualities. The scheduler assigns available resource blocks to UEs using the order in the list. A reconfigurable parameter in the proposed scheduler determines the resource prioritization level for real-time services, and hence allows network administrators to more effectively control the resource allocation according to the QoS requirements of UEs and changing network dynamics. OMNeT++ based simulations demonstrate that the tradeoff between the performance improvement of UDP flows and the performance degradation of TCP flows can be controlled by tuning the reconfigurable traffic prioritization parameter of the proposed scheduling algorithm.
具有可重构流量优先级的LTE下行链路调度程序
移动用户数量的爆炸性增长要求蜂窝网络基础设施具备更高的容量。新兴的实时业务(如VoIP和Video on Demand)有严格的延迟要求。长期演进(Long Term Evolution, LTE)技术通过对差分服务(DiffServ)的支持,为实时业务提供更高的数据速率和更低的延迟,并通过其全ip架构降低运营成本。LTE MAC调度器通过在用户设备(ue)之间分配可用的无线电资源,在实现这些目标方面起着至关重要的作用。本文提出了一种同时考虑信道质量和终端业务类型的LTE下行链路调度算法。首先,将传入流量分为实时流和非实时流,并根据流量类型和信道质量插入到优先级列表中。调度程序使用列表中的顺序将可用资源块分配给ue。提出的调度程序中一个可重构的参数决定了实时服务的资源优先级,从而使网络管理员能够根据终端的QoS要求和不断变化的网络动态更有效地控制资源分配。基于omnet++的仿真结果表明,该调度算法可以通过调整可重构的流量优先级参数来控制UDP流的性能提升和TCP流的性能下降之间的权衡。
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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