Degrees of freedom of bursty multiple access channels with a relay

Sunghyun Kim, Changho Suh
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引用次数: 1

Abstract

We investigate the role of relays in multiple access channels (MACs) with bursty user traffic, where intermittent data traffic restricts the users to bursty transmissions. Specifically, we examine a K-user bursty MIMO Gaussian MAC with a relay, where bursty traffic of each user is governed by a Bernoulli random process. As our main result, we characterize the degrees of freedom (DoF) region. To this end, we extend noisy network coding, in which relays compress-and-forward, to achieve the DoF cut-set bound. From this result, we establish the necessary and sufficient condition for attaining collision-free DoF performances. Also, we show that relays can provide a DoF gain which scales to some extent with additional relay antennas. Our results have practical implications in various scenarios of wireless systems, such as the Internet of Things (IoT) and media access control protocols.
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带中继的突发多址信道的自由度
我们研究了中继在突发用户流量的多址通道(mac)中的作用,其中间歇性数据流量限制了用户的突发传输。具体来说,我们研究了一个带有中继的k用户突发MIMO高斯MAC,其中每个用户的突发流量由伯努利随机过程控制。作为我们的主要结果,我们描述了自由度(DoF)区域。为此,我们扩展了噪声网络编码,其中中继压缩转发,以实现DoF切割集边界。从这一结果出发,建立了实现无碰撞自由度的充分必要条件。此外,我们表明继电器可以提供一个自由度增益,在一定程度上缩放额外的中继天线。我们的研究结果在无线系统的各种场景中具有实际意义,例如物联网(IoT)和媒体访问控制协议。
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