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Age minimization in energy harvesting communications: Energy-controlled delays

机译:能量收集通信中的年龄最小化:能量控制的延迟

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We consider an energy harvesting source that is collecting measurements from a physical phenomenon and sending updates to a destination within a communication session time. Updates incur transmission delays that are function of the energy used in their transmission. The more transmission energy used per update, the faster it reaches the destination. The goal is to transmit updates in a timely manner, namely, such that the total age of information is minimized by the end of the communication session, subject to energy causality constraints. We consider two variations of this problem. In the first setting, the source controls the number of measurement updates, their transmission times, and the amounts of energy used in their transmission (which govern their delays, or service times, incurred). In the second setting, measurement updates externally arrive over time, and therefore the number of updates becomes fixed, at the expense of adding data causality constraints to the problem. We characterize age-minimal policies in the two settings, and discuss the relationship of the age of information metric to other metrics used in the energy harvesting literature.
机译:我们考虑一个能量收集源,它从物理现象中收集测量值,并在通信会话时间内将更新发送到目的地。更新会导致传输延迟,该延迟取决于其传输中使用的能量。每次更新使用的传输能量越多,到达目标的速度就越快。目标是及时发送更新,即,使新的信息寿命在通信会话结束时受到能量因果关系的约束而最小化。我们考虑此问题的两个变体。在第一种设置中,源控制测量更新的次数,传输时间以及传输中使用的能量(控制所发生的延迟或服务时间)。在第二种设置中,度量更新随时间从外部到达,因此更新的数量变得固定,以增加问题的数据因果关系约束为代价。我们在这两种情况下描述了最小年龄策略,并讨论了信息量度与能量收集文献中使用的其他量度之间的关系。

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