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A COOPERATIVE COMMUNICATION IN WIRELESS NETWORKS BASED ON BEST RELAY SELECTION: 4TH GENERATION OF MOBILE COMMUNICATION

机译:基于最佳中继选择的无线网络中的合作通信:第4代移动通信

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Transmit diversity generally requires more than one antenna at the transmitter. But many wireless devices are limited by size or hardware complexity to one antenna. Recently, a new class of methods called cooperative communication has been proposed that enables single-antenna mobiles in multi-user environment to share their antennas and form a virtual multiple antenna transmitter that allow them to achieve transmit diversity. However, most of proposed methods require distributed space time coding algorithms which is very critical. We propose a method that provides transmit diversity gain on the order of the number of relays in the network Our scheme first selects the best relay from a set of M available relays then uses this "Best" relay for cooperation between the transmitter and the receiver. The selection of best relay is not required any topology information and is based on local measurements of the instantaneous channel conditions. The theoretic analysis of outage probability shows that our scheme achieves the same diversity-multiplexing tradeoff as achieved by more complex protocols, where distributed space-time coding for M relays is required.
机译:传输多样性通常需要发射器处的多于一个天线。但许多无线设备受到一个天线的大小或硬件复杂性的限制。最近,已经提出了一种新的一类称为合作通信的方法,使得在多用户环境中能够共享他们的天线并形成允许它们实现传输分集的虚拟多天线发射器。然而,大多数所提出的方法需要分布式空间时间编码算法,这非常关键。我们提出了一种方法,该方法提供网络中继线数量的传输分集增益我们的方案首先从一组M可用中继选择最佳继电器,然后使用该“最佳”继电器进行发射机和接收器之间的协作。任何拓扑信息都不需要选择最佳继电器,并且基于瞬时信道条件的本地测量。中断概率的理论分析表明,我们的方案实现了通过更复杂的协议实现的相同的多路复用权衡,其中需要为M继电器进行分布式空间编码。

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