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Resource allocations in relay-assisted cellular networks

机译:中继蜂窝网络中的资源分配

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In a relay-assisted cellular network, the transmission mode (either direct transmission or relaying) and the transmit power of the source and relay nodes affect not only transmission rates of individual links but also the rates of other links sharing the same channel. In this paper, we propose a cross-layer design that jointly considers the transmission mode/relay node selection (MRS) with power allocation (PA) to optimize the system rate. We first formulate an optimization problem for a cellular system, where the same frequency channel can be reused in different cells. A low complexity heuristic MRS scheme is proposed on the basis of the link and interference conditions of the source and potential relay nodes. Given the transmission mode and relay node (if the relaying mode is chosen) of each link, the transmit power of the source and relay nodes can be solved by geometric programming. This method for MRS and PA can achieve a close-to-optimum performance, but implementing the PA requires heavy signalling exchanged among cells. To reduce the signalling overheads, we finally proposed a heuristic and distributed method for MRS and PA inspired by some asymptotic analysis. Numerical results are conducted to demonstrate the rate performance of the proposed methods.Copyright (c) 2013 John Wiley & Sons, Ltd.
机译:在中继辅助蜂窝网络中,源节点和中继节点的传输模式(直接传输或中继)以及传输功率不仅会影响单个链路的传输速率,还会影响共享同一信道的其他链路的速率。在本文中,我们提出了一种跨层设计,该设计结合了传输模式/中继节点选择(MRS)和功率分配(PA)来优化系统速率。我们首先为蜂窝系统制定一个优化问题,在该系统中,相同的频道可以在不同的小区中重用。基于源节点和潜在中继节点的链路和干扰条件,提出了一种低复杂度的启发式MRS方案。给定每条链路的传输模式和中继节点(如果选择了中继模式),则可以通过几何编程来解决源节点和中继节点的传输功率。这种用于MRS和PA的方法可以达到接近最佳的性能,但是要实现PA,则需要在单元之间交换大量信号。为了减少信令开销,我们最终通过启发式分析提出了一种启发式的分布式MRS和PA方法。数值结果证明了所提出方法的速率性能。(c)2013 John Wiley&Sons,Ltd.

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