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Applicability of Interference Coordination in Highly Loaded HSUPA Network

机译:高负载HSUPA网络中干扰协调的适用性

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This paper evaluates the performance of highly loaded High Speed Uplink Packet Access (HSUPA) network with and without network wide static Interference Coordination (IC). IC alternates the priorities for user transmission periods throughout the network to achieve reduced interference levels and higher performance. A large variety of combinations including, e.g., different schedulers, cell center/edge user definitions (user splits) and interference targets are investigated in this paper. Performance is analyzed using a quasi-static system level simulator which is also used to support Third Generation Partnership Project (3GPP) standardization work. The simulator contains detailed and commonly accepted models, for instance, for channel profiles, fading and propagation. The study indicated that IC can bring gain in certain scenarios. However, the gain comes at the expense of fairness leading to users that already have high throughput benefiting from the situation. Moreover, it was shown that the major part of the gain comes from splitting users to different groups and scheduling these groups without any network wide interference coordination.
机译:本文评估了高负载高速上行链路分组访问(HSUPA)网络的性能,无需网络宽静态干扰协调(IC)。 IC替换整个网络中的用户传输周期的优先级,以实现减少的干扰水平和更高的性能。在本文中研究了各种组合,包括例如不同的调度仪,单元中心/边缘用户定义(用户分割)和干扰靶标。使用准静态系统级模拟器进行分析性能,该模拟器还用于支持第三代合作伙伴计划(3GPP)标准化工作。模拟器包含详细且常见的模型,例如,用于通道配置文件,衰落和传播。该研究表明,IC可以在某些情况下带来收益。然而,收益牺牲了公平,导致用户已经有了从局势中获得高吞吐量的用户。此外,结果表明,增益的主要部分来自分割用户到不同的组,并在没有任何网络宽的干扰协调的情况下调度这些组。

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