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LTE-A Multi-hop Network with Zero Link Overflow Utilizing OTFWC Scheduling

机译:利用OTFWC调度实现零链路溢出的LTE-A多跳网络

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Multi-hop Relay networks are proposed to fulfill the demanding coverage and capacity requirements for current applications in a cost efficient way. It can be used in IMT-Advanced technologies such as 3GPP LTE-Advanced. In this paper, Resource Blocks (RBs) proposed scheduling scheme is considered for zero multi-hop links overflow in Uplink LTE-Advanced. Then based on this scheduling scheme and other network assumptions the best Relay Station (RS) placement in the cell was estimated in order to improve LTE-A Uplink performance. The total LTE-A uplink Throughput, average throughput per user, and Mean File Transfer Time (MFTT) in the LTE-A network are considered as performance measures. This is done and measured as a function of different arrival rates of UEs assigned from random positions in the cell. Adaptive Modulation, and Coding (AMC) scheme with high order 2x4MIMO is used to maximize network throughput with low bit error rate (BER). Simulation results show effective improvement in uplink network performance using the proposed scheduling scheme and 2x4MIMO-AMC with RS at 50% of cell radius towards cell edge.
机译:提出了多跳中继网络,以节省成本的方式满足当前应用程序对覆盖范围和容量的要求。可以在IMT-Advanced技术(例如3GPP LTE-Advanced)中使用。在本文中,针对上行LTE-Advanced中零多跳链路溢出考虑了资源块(RB)提出的调度方案。然后,基于此调度方案和其他网络假设,估计了小区中的最佳中继站(RS)位置,以提高LTE-A上行链路性能。 LTE-A网络中的总LTE-A上行吞吐量,平均每用户吞吐量和平均文件传输时间(MFTT)被视为性能指标。这是根据从小区中随机位置分配的UE的不同到达率来完成和测量的。具有高阶2x4MIMO的自适应调制和编码(AMC)方案用于以低误码率(BER)最大化网络吞吐量。仿真结果表明,使用所提出的调度方案和2x4MIMO-AMC可以有效改善上行链路网络性能,其中RS朝向小区边缘的小区半径为50%。

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