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Power ratio adjustment for multi-packet reception-capable wireless networks

机译:多包接收能力的无线网络的功率比调整

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Because of the rapid advancements in signal processing and multiuser detection (MUD) technologies, a wireless node can successfully decode compound signals from multiple transmitters. The increase in the number of simultaneous transmissions leads to higher throughput as long as the transmissions are successfully decoded by the receiver. To maximize the performance of such multi-packet reception (MPR)-capable networks, it is desirable to maximize the minimum Euclidean distance among the constellation points of the compound signal at the receiver. In this paper, we propose a feedback-based relative power ratio adjustment scheme, which estimates the symbol energy of each transmitter's received signal, computes the optimal power ratio among the transmitters, and feeds back the optimal power levels to the transmitters. We show that the proposed scheme significantly reduces the error probability in an MPR-capable multiuser communication system.
机译:由于信号处理和多用户检测(MUD)技术的快速进步,无线节点可以成功地解码来自多个发射机的复合信号。只要通过接收器成功解码传输即可,同时传输数量的增加导致吞吐量更高。为了最大化这种多包接收的性能(MPR)可卡网,期望最大化在接收器处的化合物信号的星座点之间的最小欧几里德距离。在本文中,我们提出了一种基于反馈的相对功率比调整方案,其估计每个发射器接收信号的符号能量,计算发射器之间的最佳功率比,并将最佳功率电平馈送到发射器。我们表明,该方案显着降低了能够的MPR的多用户通信系统中的误差概率。

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