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Downlink Resource Allocation for LTE-Advanced Networks with Type1 Relay Nodes

机译:具有Type1中继节点LTE-Advanced Networks的下行链路资源分配

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Type1 in-band relaying is supported by Long Term Evolution Advanced (LTE-Advanced). Based on the frame structure defined in 3GPP LTE, a down link radio frame is partitioned into access and backhaul sub-frames. In the access sub-frames, the direct link and access link transmissions can take place simultaneously with full frequency reuse. In the backhaul sub-frames, the DeNB (Donor evolved Node B) allocates orthogonal resources for different DeNB->RN transmission as well as co-scheduled DeNB->UE transmissions. Macro UE scheduled during the backhaul sub-frames will avoid the interference from RN in downlink, enjoying improved SINR. However, this will decrease the efficiency of radio resource reuse, and potentially reduce cell throughput. In this paper, the performance of relay enhanced networks with partial macro UEs scheduled during the backhaul sub-frames is investigated through system level simulation. A simplified resource allocation algorithm (SRA) which aims to maximize the throughput of worst UEs in relay enhanced networks is proposed to calculate the resource allocation among DeNB->RN transmission, RN-UE transmissions, as well as DeNB->UE transmissions in backhaul sub-frames and access sub-frames. Average cell throughput gain and 5%-tile user throughput gain of proposed resource allocation algorithm (SRA) is compared with an exhaustive search algorithm.
机译:长期演进Advanced(LTE-Advanced)支持Type1带内继。基于在3GPP LTE中定义的帧结构,向下链路无线电帧被划分为访问和回程子帧。在访问子帧中,直链路和访问链路传输可以同时进行全频率重用。在回程子帧中,DENB(捐赠者进化节点B)为不同的DENB-> RN传输的正交资源分配,以及共同调度的DENB-> UE传输。在回程子帧期间安排的宏UE将避免下行链路中RN的干扰,享受改进的SINR。但是,这将降低无线电资源重用的效率,并且可能降低单元吞吐量。在本文中,通过系统级模拟研究了在回程子帧期间调度的部分宏UE的中继增强网络的性能。提出了一种简化的资源分配算法(SRA),其旨在最大限度地提高继电器增强网络中最差UE的吞吐量,以计算DENB-> RN传输,RN-UE传输的资源分配,以及回程中的DENB-> UE传输子帧和访问子帧。将建议资源分配算法(SRA)的平均细胞吞吐量增益和5%-TILE用户吞吐量增益与详尽的搜索算法进行比较。

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