两种离散能量收集模型的通信策略

K. F. Trillingsgaard, P. Popovski
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引用次数: 6

摘要

能量收集正在成为为小型无线设备供电的可行选择。数据传输的能量是由大自然提供的,因此当传输即将在任意时刻发生时,可用的能量是一个随机的量。到达的能量被储存在电池中,如果电池耗尽能量,传输就会中断。我们在基于插槽的能量收集系统中解决通信问题,其中发射器与ON-OFF信号通信:在每个插槽中,它可以选择发送(ON)或保持沉默(OFF)。讨论了两种不同的收获和交流模型。在第一个模型中,一个能量量子可以以一定的概率到达每个槽。第二个模型基于大小为F的帧:能量周期性地通过F个槽到达,批次中包含随机数量的能量量子。我们设计了可实现的策略,并在无差错传输信道的情况下比较了基于时隙和基于帧的模型。此外,对于基于时隙的模型和存在误差的信道,我们提供了一种新的容量证明。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Communication strategies for two models of discrete energy harvesting
Energy harvesting is becoming a viable option for powering small wireless devices. Energy for data transmission is supplied by the nature, such that when a transmission is about to take place in an arbitrary instant, the amount of available energy is a random quantity. The arrived energy is stored in a battery and transmissions are interrupted if the battery runs out of energy. We address communication in slot-based energy harvesting systems, where the transmitter communicates with ON-OFF signaling: in each slot it can either choose to transmit (ON) or stay silent (OFF). Two different models of harvesting and communication are addressed. In the first model an energy quantum can arrive, with a certain probability, in each slot. The second model is based on a frame of size F: energy arrives periodically over F slots, in batches containing a random number of energy quanta. We devise achievable strategies and compare the slot- with the frame-based model in the case of an errorless transmission channel. Additionally, for the slot-based model and channel with errors, we provide a new proof of the capacity achieved by the save-and-transmit scheme.
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