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System Performance of an LTE-A Cellular Network with Shared Relays under Different Resource Demands

机译:不同资源需求下共享中继的LTE-A蜂窝网络的系统性能

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In this paper, we focus on a shared relay architecture in the cellular network instead of deploying multiple separated relays near cell edges. The advantage of shared relaying is the joint processing of signals at the relay to suppress the inter-cell interference (ICI). The performance of a relay enhanced cellular system depends significantly on the resource allocation scheme, especially when taking into account the resource competition from different links. Therefore, in this work, an efficient and effective resource allocation and scheduling scheme based on the subframe structure is proposed to maximize the benefit of the shared relay. System level simulations quantify the system performance in different resource demand situations, and show that the deployment of shared relays can improve significantly the overall system performance and also increase the throughput of cell edge users as compared to the conventional separated cell edge relay station deployment.
机译:在本文中,我们专注于蜂窝网络中的共享中继体系结构,而不是在小区边缘附近部署多个分离的中继。共享中继的优点是在中继器上对信号进行联合处理,以抑制小区间干扰(ICI)。中继增强型蜂窝系统的性能在很大程度上取决于资源分配方案,尤其是在考虑到来自不同链路的资源竞争时。因此,在这项工作中,提出了一种基于子帧结构的高效有效的资源分配和调度方案,以最大化共享中继的利益。系统级仿真量化了在不同资源需求情况下的系统性能,并表明与传统的分离式小区边缘中继站部署相比,共享中继的部署可以显着改善整体系统性能,并且还可以增加小区边缘用户的吞吐量。

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