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Bandwidth efficiency analysis of cooperative communication with Reactive Relay Selection

机译:无功中继选择协同通信的带宽效率分析

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Cooperative communication systems (CCS), which make use of the intermediate relays between the transmitter and the receiver, have been employed as an effective technique to combat the channel fading and to enhance the system performance. Cooperative systems have some drawbacks such as high latency and low bandwidth efficiency. To alleviate the negative effects of these factors, relay selection criteria is employed in cooperative communication systems to increase overall bandwidth efficiency and decrease latency. Relay selection in the cooperative systems enables the source to cooperate with the single relay node rather than multiple relay nodes which reduce the overall bandwidth efficiency. To prestige the benefit of cooperation, an efficient relay selection method is needed. In this paper, we propose a novel relay selection method, maximum link source-relay-destination (MLSRD) method in cooperative communication systems. The design goal of MLSRD is to improve the bandwidth efficiency. The result shows the MLSRD outperform cooperative communication systems without MLSRD in the term of the Bandwidth efficiency.
机译:利用发送器和接收器之间的中间中继的协作通信系统(CCS)已被用作对抗信道衰落并增强系统性能的有效技术。协作系统具有一些缺点,例如高延迟和低带宽效率。为了减轻这些因素的负面影响,在合作通信系统中采用了中继选择标准,以提高整体带宽效率并减少等待时间。协作系统中的中继选择使源能够与单个中继节点而非多个中继节点进行协作,从而降低了整体带宽效率。为了赢得合作的好处,需要一种有效的中继选择方法。在本文中,我们提出了一种新颖的中继选择方法,即协作通信系统中的最大链路源中继目的地(MLSRD)方法。 MLSRD的设计目标是提高带宽效率。结果表明,就带宽效率而言,MLSRD优于无MLSRD的协作通信系统。

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