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Multi-source cooperation with full-diversity spectral-efficiency and controllable-complexity

机译:多源合作,具有全集谱效率和可控复杂性

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摘要

A general framework is developed for multi-source cooperation (MSC) protocols to improve diversity and spectral efficiency relative to repetition based alternatives that rely on single-source cooperation. The novel protocols are flexible to balance tradeoffs among diversity, spectral efficiency and decoding-complexity. Users are grouped in clusters and follow a two-phase MSC protocol which involves time division multiple access (TDMA) to separate users within a cluster, and code division multiple access (CDMA) used to separate clusters. An attractive protocol under the general MSC framework relies on distributed complex field coding (DCFC) to enable diversity order equal to the number of users per cluster. Cluster separation based on orthonormal spreading sequences leads to spectral efficiency 1/2. When the number of clusters exceeds the amount of spreading, spectral efficiency can be enhanced without sacrificing diversity, at the expense of controllable increase in complexity. Simulations corroborate our analytical claims
机译:开发了用于多源合作(MSC)协议的通用框架,以相对于依赖于单源合作的基于重复的替代方案提高分集和频谱效率。新颖的协议可灵活地平衡分集,频谱效率和解码复杂度之间的折衷。用户按群集分组,并遵循两阶段MSC协议,该协议涉及时分多址(TDMA)来分离群集中的用户,以及码分多址(CDMA)用于分离群集。在通用MSC框架下,一种有吸引力的协议依赖于分布式复杂字段编码(DCFC),以使分集顺序等于每个集群的用户数。基于正交扩频序列的聚类分离导致频谱效率为1/2。当簇的数量超过扩频量时,可以在不牺牲多样性的情况下提高频谱效率,但以可控制的复杂性增加为代价。模拟证实了我们的分析主张

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