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Diamond Networks With Bursty Traffic: Bounds on the Minimum Energy-Per-Bit

机译:交通繁忙的钻石网络:限制每位能量的最小值

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When data traffic in a wireless network is bursty, small amounts of data sporadically become available for transmission, at times that are unknown at the receivers, and an extra amount of energy must be spent at the transmitters to overcome this lack of synchronization between the network nodes. In practice, predefined header sequences are used with the purpose of synchronizing the different network nodes. However, in networks where relays must be used for communication, the overhead required for synchronizing the entire network may be very significant. In this paper, we study the fundamental limits of energy-efficient communication in an asynchronous diamond network with two relays. We formalize the notion of relay synchronization by saying that a relay is synchronized if the conditional entropy of the arrival time of the source message given the received signals at the relay is small. We show that the minimum energy-per-bit for bursty traffic in diamond networks is achieved with a coding scheme where each relay is either synchronized or not used at all. A consequence of this result is the derivation of a lower bound to the minimum energy-per-bit for bursty communication in diamond networks. This bound allows us to show that schemes that perform the tasks of synchronization and communication separately (i.e., with synchronization signals preceding the communication block) can achieve the minimum energy-per-bit to within a constant fraction that ranges from 2 in the synchronous case to 1 in the highly asynchronous regime.
机译:当无线网络中的数据流量突发时,偶尔会有少量数据可用于传输,有时在接收器处是未知的,并且必须在传输器上花费额外的能量,以克服网络之间缺乏同步的情况节点。实际上,为了同步不同的网络节点,使用了预定义的报头序列。但是,在必须使用中继进行通信的网络中,同步整个网络所需的开销可能非常大。在本文中,我们研究了具有两个继电器的异步菱形网络中节能通信的基本限制。我们将中继同步的概念形式化,说如果给定接收信号的源消息到达时间的条件熵很小,则中继就是同步的。我们表明,采用一种编码方案可以实现菱形网络中突发流量的最小每比特能量,其中每个中继都是同步的,或者根本不使用。该结果的结果是,得出了钻石网络中突发通信的最小每比特能量下限。此界限使我们可以证明,分别执行同步和通信任务的方案(即,在通信块之前使用同步信号)可以在同步情况下,将每位能量的最小能量限制在2的恒定范围内在高度异步状态下为1。

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