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Performance of Two-User Two-Way Amplify-and-Forward Relaying Systems with Scheduling

机译:具有调度功能的两用户两路放大转发中继系统的性能

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In this paper, we study scheduling schemes for two-user two-way wireless relaying systems. Two transmission modes are considered: point-to-point direct transmission and two-way amplify-and-forward relaying. An optimal scheduling scheme that opportunistically selects the best transmission mode for each user is proposed to minimize the sum bit error rate (BER). The performance lower bound of the optimal scheduling scheme is analyzed, and closed-form expression of the lower-bound BER is derived. However, for optimal scheduling, the scheduler requires the knowledge of channel state information (CSI) of all links. To reduce the feedback information of CSI, we also propose a suboptimal scheduling scheme that selects the transmission mode using only the CSI of two direct links. Simulation results show that there are 4 dB to 8 dB gains for the proposed optimal and suboptimal schemes over the fixed direct transmission and fixed two-way relayed transmission scheme. The performance gap between the optimal and suboptimal scheduling schemes is small, which implies a good trade-off between implementation complexity and system performance.
机译:在本文中,我们研究了两用户双向无线中继系统的调度方案。考虑了两种传输模式:点对点直接传输和双向放大转发中继。提出了为每个用户适当地选择最佳传输模式的最佳调度方案,以使总误码率(BER)最小。分析了最优调度方案的性能下限,得出了下限BER的闭式表达式。但是,为了获得最佳调度,调度程序需要了解所有链路的信道状态信息(CSI)。为了减少CSI的反馈信息,我们还提出了次优调度方案,该方案仅使用两个直接链路的CSI选择传输模式。仿真结果表明,在固定直接传输和固定双向中继传输方案上,所提出的最佳和次优方案具有4 dB至8 dB的增益。最优和次优调度方案之间的性能差距很小,这意味着在实现复杂性和系统性能之间进行了很好的权衡。

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