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Improving third-party relaying for LTE-A: A realistic simulation approach

机译:改善LTE-A的第三方中继:一种现实的仿真方法

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In this article we propose solutions to diverse conflicts that result from the deployment of the (still immature) relay node (RN) technology in LTE-A networks. These conflicts and their possible solutions have been observed by implementing standard-compliant relay functionalities on the Vienna simulator. As an original experimental approach, we model realistic RN operation, taking into account that transmitters are not active all the time due to half-duplex RN operation. We have rearranged existing elements in the simulator in a manner that emulates RN behavior, rather than implementing a standalone brand-new component for the simulator. We also study analytically some of the issues observed in the interaction between the network and the RNs, to draw conclusions beyond simulation observation. The main observations of this paper are that: i) Additional time-varying interference management steps are needed, because the LTE-A standard employs a fixed time division between eNB-RN and RN-UE transmissions (typical relay capacity or throughput research models balance them optimally, which is unrealistic nowadays); ii) There is a trade-off between the time-division constraints of relaying and multi-user diversity; the stricter the constraints on relay scheduling are, the less flexibility schedulers have to exploit channel variation; and iii) Thee standard contains a variety of parameters for relaying configuration, but not all cases of interest are covered.
机译:在本文中,我们提出了针对因LTE-A网络中(仍不成熟的)中继节点(RN)技术的部署而导致的各种冲突的解决方案。通过在Vienna模拟器上实现符合标准的中继功能,可以观察到这些冲突及其可能的解决方案。作为一种原始的实验方法,我们考虑到由于半双工RN操作而导致发射机始终不处于活动状态,因此对实际的RN操作进行建模。我们已经以模拟RN行为的方式重新布置了模拟器中的现有元素,而不是为模拟器实现独立的全新组件。我们还分析研究了网络与RN之间交互中观察到的一些问题,以得出除仿真观察之外的结论。本文的主要观察结果是:i)由于LTE-A标准在eNB-RN和RN-UE传输之间采用了固定的时分(典型的中继容量或吞吐量研究模型处于平衡状态),因此需要额外的随时间变化的干扰管理步骤它们是最优的,这在当今是不现实的); ii)中继的时分限制与多用户分集之间需要权衡;中继调度的约束越严格,调度器利用信道变化的灵活性就越小。 iii)该标准包含用于中继配置的各种参数,但并未涵盖所有感兴趣的情况。

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