Performance evaluation of topologies for cooperative and Dynamic Resource Relaying

E. Reetz, R. Höckmann, R. Tönjes
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引用次数: 5

Abstract

Relaying has been proposed to support users suffering from high shadowing or high interference and therefore being not able to receive high data rates. With adaptive relaying, a higher modulation and coding scheme (MCS) can be used which increases the feasible data rate. The investigation of relaying techniques widely concentrates on information theoretical methods. Instead, this paper focuses on system level simulations to exploit the achievable results within a realistic environment. The question which relaying methodology is the best choice if unicast and a multicast transmissions are possible is investigated. The results show that relaying techniques can improve the median cell throughput and decrease the outage probability in a mixed unicast and multicast environment. Cooperative relaying results in the lowest outage probability, whereas the introduced concept of dynamic resource relaying (DRR) offers a higher cell throughput. For the investigated LTE (3GPP long term evolution) system with a frequency re-use factor of one, the outage probability can be decreased by using relaying without further frequency planning.
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协同与动态资源中继拓扑性能评价
中继已经被提议用于支持遭受高阴影或高干扰的用户,因此无法接收高数据速率。采用自适应中继,可以采用更高的调制和编码方案(MCS),从而提高可行的数据速率。对中继技术的研究主要集中在信息理论方法上。相反,本文侧重于系统级仿真,以利用在现实环境中可实现的结果。研究了在单播和组播同时存在的情况下,哪种中继方法是最佳选择。结果表明,在单播和组播混合环境下,中继技术可以提高中位小区吞吐量,降低中断概率。协作中继具有最低的中断概率,而引入的动态资源中继(DRR)概念提供了更高的小区吞吐量。对于频率复用系数为1的LTE (3GPP长期演进)系统,可以通过使用中继而无需进一步的频率规划来降低中断概率。
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