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Performance of relay-enabled uplink in cellular networks - a flow level analysis

机译:在蜂窝网络中启用中继链路的性能 - 流量水平分析

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Uplink users in cellular networks, such as UMTS/ HSPA, located at the edge of the cell generally suffer from poor channel conditions. Deploying intermediate relay nodes is seen as a promising approach towards extending cell coverage and increasing data rates. This paper focuses on the role of packet scheduling in cellular networks with relay nodes. In particular, two uplink scheduling schemes deploying the relay functionality in different ways are compared in performance to a reference scenario where relaying is not used. We derive expressions which characterize for each of the two relay-enabled schedulers the service area of a relay station as a function of the relay location and transmit power. The results show that the service area is significantly influenced by the type of scheduling. Examining the impact on the effective data rates of mobile stations shows that there is a combination of the relay's position and transmit power which optimizes uplink service. Furthermore, based on calculations of flow throughput, we show that relaying improves flow level performance of all users, including those who do not use the relay.
机译:蜂窝网络中的上行链路用户(例如UMTS / HSPA),位于电池边缘的UMTS / HSPA通常遭受差的信道条件。部署中间中继节点被视为扩展细胞覆盖和增加数据速率的有希望的方法。本文重点介绍了数据包调度在具有继电器节点的蜂窝网络中的作用。特别地,以不同方式部署中继功能的两个上行链路调度方案被比较到不使用中继的参考场景。我们推出表达的表达,其表征了两个中继站的每个中继站的服务区域作为中继位置的函数和发射功率的调度。结果表明,服务区受到调度类型的显着影响。检查对移动台有效数据速率的影响表明继电器的位置和发射功率的组合优化了上行服务。此外,根据流量吞吐量的计算,我们表明,中继提高了所有用户的流量水平性能,包括那些不使用继电器的用户的性能。

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