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Optimizing Downlink Throughput with User Cooperation and Scheduling in Adaptive Cellular Networks

机译:自适应蜂窝网络中通过用户协作和调度来优化下行链路吞吐量

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User cooperation is an emerging transmission framework where users act as relays of each other to provide extra diversity paths for better overall performance. However, most work in the literature focused only on the physical-layer properties and operations of a fixed pair of source and destination at a particular time instant. In contrast, we consider the downlink throughput optimization for an adaptive cellular network with both user cooperation and scheduling. Firstly, we evaluate several commonly used cooperation strategies under different fairness constraints. We show that the decode-and-forward protocol cannot deliver any capacity gain over its non-cooperative counterpart when users are scheduled for maximizing the overall system throughput. Secondly, the placement of relaying timeslots, which directly affects the cooperation performance, is investigated over existing frame structures so that user cooperation can be enabled easily in conventional networks. It is shown that multiple relays can actually be supported in different timeslots concurrently with other transmissions through scheduling and the corresponding optimal relays selection and power allocation are derived.
机译:用户合作是一种新兴的传输框架,其中用户充当彼此的中继,以提供额外的分集路径以提高整体性能。但是,文献中的大多数工作仅关注物理层属性以及在特定时刻固定的一对源和目标的操作。相反,我们考虑具有用户合作和调度的自适应蜂窝网络的下行链路吞吐量优化。首先,我们评估了几种在不同公平性约束下常用的合作策略。我们显示,当调度用户以最大程度地提高整体系统吞吐量时,解码和转发协议无法提供超过其非合作伙伴的任何容量增益。其次,在现有的帧结构上研究了直接影响协作性能的中继时隙的放置,从而可以在常规网络中轻松实现用户协作。结果表明,通过调度,实际上可以在其他时隙中同时支持多个中继,并且可以得出相应的最佳中继选择和功率分配。

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