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Long Term Evolution Downlink Packet Scheduling using A Novel Proportional-Fair-Energy Policy

机译:使用新型比例公式能源政策的长期演进下行链路分组调度

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Inter-cell interference (ICI) is a key limiting factor to the general performance of a multi-cell multi-user radio access network. The channel quality of cell edge users is greatly impaired by ICI owing to the fact that cell edge users are furthest away from the their serving base station and closest to the interfering base stations. As a result the Quality of Service (QoS) and energy efficiency of the E-UTRAN is primarily dependant on the cell edge users. Firstly, we propose a new Time Domain Packet Scheduling criterion that endeavours to reduce the variation in the energy performance, of the users, in a temporal sense. The proposed criteria aims to strike a balance between two user prioritisation criteria that result in energy performance at the two extremes of the energy consumption range. The paper shows that this improves the mean energy efficiency of the EUTRAN. Secondly, we introduce an energy optimisation algorithm to complement the Time Domain Packet Scheduler. The new energy aware packet scheduling criteria is compared against the established throughput based proportional fair scheduler with uniform power allocation and is shown to produce 20% Energy Reduction Gains (ERG) without compromising the spectral efficiency and QoS performance.
机译:小区间干扰(ICI)是多单元多用户无线电接入网络的一般性能的关键限制因素。由于细胞边缘用户最远地远离其服务基站,并且最接近干扰基站,ICI非常损害小区边缘用户的信道质量。结果,E-UTRAN的服务质量(QoS)和能效主要依赖于细胞边缘用户。首先,我们提出了一种新的时域分组调度标准,其努力在时间意义上减少用户的能量性能的变化。拟议的标准旨在在两个用户优先级标准之间取得平衡,这导致能量消耗范围的两个极端能量性能。本文表明,这提高了Eutran的平均能量效率。其次,我们介绍了一种能量优化算法来补充时域包调度器。将新的能量感知数据包调度标准与已建立的基于吞吐量的比例公平调度器进行比较,其具有均匀的功率分配,并显示出产生20%的能量降低增益(ERG),而不会影响光谱效率和QoS性能。

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