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Coded status updates in an energy harvesting erasure channel

机译:能量收集擦除通道中的编码状态更新

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We consider an energy harvesting transmitter sending status updates to a receiver over an erasure channel, where each status update is of length k symbols. The energy arrivals and the channel erasures are independent and identically distributed (i.i.d.) and Bernoulli distributed in each slot. In order to combat the effects of the erasures in the channel and the uncertainty in the energy arrivals, we use channel coding to encode the status update symbols. We consider two types of channel coding: maximum distance separable (MDS) codes and rateless erasure codes. For each of these models, we study two achievable schemes: best-effort and save-and-transmit. In the best-effort scheme, the transmitter starts transmission right away, and sends a symbol if it has energy. In the save-and-transmit scheme, the transmitter remains silent in the beginning in order to save some energy to minimize energy outages in future slots. We analyze the average age of information (AoI) under each of these policies. We show through numerical results that as the average recharge rate decreases, MDS coding with save-and-transmit outperforms all best-effort schemes. We show that rateless coding with save-and-transmit outperforms all the other schemes.
机译:我们考虑通过擦除通道将发射器发送状态更新的能量收集到接收器,其中每个状态更新都是长度k符号。能量到达和信道擦除是独立的,并且相同分布(即)和分布在每个插槽中的Bernoulli。为了打击擦除在信道中的效果和能量到来的不确定性,我们使用信道编码来编码状态更新符号。我们考虑两种类型的信道编码:最大距离可分离(MDS)代码和无数的擦除代码。对于这些模型中的每一个,我们研究了两个可实现的计划:最佳努力和节省和传输。在最佳方案中,发射机立即开始传输,如果它具有能量,则发送符号。在节省和传输方案中,发射机在开始时保持沉默,以节省一些能量以最小化未来插槽中的能量中断。我们分析了每项政策下的信息(AOI)的平均年龄。我们通过数值结果表明,随着平均充电率降低,MDS编码与保存和传输优于所有最佳工作方案。我们表明,没有节省和传输优于所有其他方案的无数编码。

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