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Hybrid transmission scheme and relay selection in LTE-Advanced network: Graph-based approach

机译:LTE-Advanced网络中的混合传输方案和继电器选择:基于图形的方法

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This paper proposes a dynamic resource block allocation scheme in relay-assisted bidirectional LTE-Advanced networks which consists of three nodes: User Equipment (UE), Base Station or eNodeB (eNB) and an intermediate Relay Node (RN). In this work, an enhanced three-time-slot per cycle timedivision duplexing (TDD) transmission protocol is proposed to the LTE-Advanced frame architecture. In such a protocol, UEs and the eNB can choose between different transmission schemes: direct transmission, pure Cooperative relaying (CoR scheme) using an intermediate relay station, or via the combination of Network Coding and Cooperative Relaying (NC/CoR scheme). A graph-based framework is proposed to solve the NP-hard combinatorial optimization problem. Our problem is transformed into a maximum weighted clique problem and used to provide optimal achievable rate regions for the hybrid transmission scheme, resource block assignment and relay selection. The proposed hybrid transmission scheme determines the best transmission strategy among direct transmission, CoR and NC/CoR in each three-time-slot cycle based on the system channel information as well as the queue length information. The simulation results show that our optimization algorithm significantly outperforms conventional schemes for both SISO and MIMO systems.
机译:本文提出了一种由三个节点组成的中继辅助双向LTE-高级网络中的动态资源块分配方案:用户设备(UE),基站或eNodeB(eNB)和中间中继节点(RN)。在这项工作中,向LTE-Advanced Frame架构提出了每个周期定时的双工(TDD)传输协议的增强的三次时隙。在这样的协议中,UE和eNB可以在不同的传输方案之间进行选择:使用中间中继站或通过网络编码和协作中继(NC / COR方案)的组合来在不同的传输方案之间进行直接传输,纯协作中继(COR方案)。提出了一种基于图形的框架来解决NP-Colly组合优化问题。我们的问题被转换为最大加权集团问题,并用于为混合传输方案,资源块分配和中继选择提供最佳的可实现速率区域。所提出的混合传输方案基于系统信道信息以及队列长度信息,确定每个三次时隙周期中的直接传输,COR和NC / COR之间的最佳传输策略。仿真结果表明,我们的优化算法显着优于SISO和MIMO系统的传统方案。

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