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A Semi-distributed Resource Allocation Scheme for OFDMA Relay-Enhanced Downlink Systems

机译:OFDMA中继增强的下行链路系统的半分布式资源分配方案

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We propose a efficient semi-distributed resource allocation scheme for OFDMA relay-enhanced downlink systems. Firstly, an adaptive subframe partitioning (ASP) algorithm that considers user's queue length and achievable data rate is used by base station to assign resources to relay stations. Regarding the slot allocation, we suggest two ways to extend conventional single-hop scheduling algorithms into multihop scenarios: link-based and end-to-end approaches. Simulation results indicate that the ASP algorithm reduces the amount of data buffered in relay stations, and hence increases system utilization and reduces the data loss caused by buffer overflow and handovers. Comparison of link-based and end-to-end approaches on max carrier-to-interference ratio (Max C/I) and proportional fairness (PF) scheduling algorithms shows that algorithms using the end-to-end approach can obtain higher throughput than those using the link-based approach, but at the expense of extra overhead for information exchange between the base station and relay stations. By using the ASP with the end-to-end PF scheduling, our frame-based resource allocation scheme achieves a tradeoff between system throughput maximization and fairness.
机译:我们为OFDMA中继增强的下行链路系统提出了一种有效的半分布式资源分配方案。首先,通过基站使用基站使用基站来将资源分配给中继站的队列长度和可实现的数据速率的自适应子帧分区(ASP)算法。关于插槽分配,我们建议将传统的单跳调度算法扩展到多轴方案的两种方法:基于链接和端到端的方法。仿真结果表明,ASP算法减少了中继站缓冲的数据量,因此提高了系统利用率,并降低了由缓冲溢出和切换引起的数据丢失。 Max载波到干扰比(MAX C / I)和比例公平性(PF)调度算法上的基于端到端接近的比较显示,使用端到端方法的算法可以获得更高的吞吐量使用基于链路的方法的那些,但是在基站和中继站之间的信息交换的额外开销的费用。通过使用与端到端PF调度的ASP,我们的帧的资源分配方案实现了系统吞吐量最大化和公平性之间的权衡。

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