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Two-way communication with energy exchange

机译:双向通讯与能量交换

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The conventional assumption made in the design of communication systems is that the energy used to transfer information between a sender and a recipient cannot be reused for future communication tasks. A notable exception to this norm is given by passive RFID systems, in which a reader can transfer both information and energy via the transmitted radio signal. Conceivably, any system that exchanges information via the transfer of given physical resources (radio waves, particles, qubits) can potentially reuse, at least part, of the received resources for communication later on. In this paper, a two-way communication system is considered that operates with a given initial number of physical resources, referred to as energy units. The energy units are not replenished from outside the system, and are assumed, for simplicity, to be constant over time. A node can either send an “on” symbol (or “1”), which costs one unit of energy, or an “off” signal (or “0”), which does not require any energy expenditure. Upon reception of a “1” signal, the recipient node “harvests” the energy contained in the signal and stores it for future communication tasks. Inner and outer bounds on the achievable rates are derived, and shown via numerical results to coincide if the number of energy units is large enough.
机译:通信系统设计中的常规假设是,用于在发送方和接收方之间传递信息的能量无法再用于未来的通信任务。该规范的一个显着例外是无源RFID系统,在该系统中,读取器可以通过传输的无线电信号传输信息和能量。可以想象,任何通过给定物理资源(无线电波,粒子,量子比特)的传输来交换信息的系统都可能会至少部分地重用接收到的资源,以便以后进行通信。在本文中,考虑了一种双向通信系统,该系统以给定的初始物理资源数量(称为能量单位)运行。能量单位不会从系统外部进行补充,为简单起见,假定其随时间变化是恒定的。节点可以发送花费一个能量单位的“开启”符号(或“ 1”),也可以发送不需要任何能量消耗的“关闭”信号(或“ 0”)。接收到“ 1”信号后,接收方节点“收集”信号中包含的能量,并将其存储以用于将来的通信任务。得出可达到速率的内界和外界,并通过数值结果表明,如果能量单位的数量足够大,它们将重合。

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