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Buffer-aided relay selection with inter-relay interference mitigation for successive multiple antennas relay systems

机译:连续多天线中继系统的具有中继间干扰缓解功能的缓冲辅助中继选择

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In this paper, we consider a cooperative network comprising of a source node, a destination node and M amplify-and-forward half-duplex relay nodes. Both the source and destination have one antenna and each relay is equipped with N antennas. There exists a buffer at each relay in order to store the incoming data packet and retransmit it to the destination later. At each time slot, simultaneous data transmission of the source and one of the relay results in inter-relay interference (IRI). We propose a novel buffer-aided relay selection scheme which mitigates the IRI with the aid of minimum variance (MV) beamforming and the relay buffers. More specifically, at each time slot, two relays are selected to receive data from the source and to transmit data to the destination provided that the associated source-to-destination signal-to-interference-plus-noise ratio (SINR) is maximized. By simulations, we investigate the performance of the proposed policy in terms of the throughput, delay, outage probability and SER (symbol error rate). It is shown that the proposed scheme suppresses the IRI efficiently, achieves higher throughput and lower outage probability compared to the other recently proposed successive relaying policies.
机译:在本文中,我们考虑一个由源节点,目的节点和M个放大转发半双工中继节点组成的协作网络。源和目标都有一个天线,每个中继都配备有N根天线。每个中继站都有一个缓冲区,以便存储传入的数据包,并在以后将其重新发送到目的地。在每个时隙,源和中继之一的同时数据传输会导致中继间干扰(IRI)。我们提出了一种新颖的缓冲区辅助中继选择方案,该方案借助最小方差(MV)波束成形和中继缓冲区来减轻IRI。更具体地说,在每个时隙选择两个中继器,以从源接收数据并将数据发送到目的地,前提是相关的源-目的信号与干扰加噪声比(SINR)最大化。通过仿真,我们在吞吐量,延迟,中断概率和SER(符号错误率)方面研究了所提出策略的性能。结果表明,与最近提出的其他连续中继策略相比,所提出的方案有效地抑制了IRI,实现了更高的吞吐量和更低的中断概率。

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