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Online Power Control for Block i.i.d. Bernoulli Energy Harvesting Channels

机译:i.i.d块的在线电源控制伯努利能源收集渠道

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This work studies the problem of online power control for energy harvesting systems with random energy arrivals and a finite battery. The stochastic model for the energy arrivals is block i.i.d., in which the energy arrivals are constant for a fixed duration, but can change independently between different blocks. We propose a simple online power control policy for the case of Bernoulli energy arrivals, and prove that its performance gap to the optimal throughput is bounded by a constant which is independent of the parameters of the problem. This also yields a simple formula for the approximately optimal long-term average throughput, which sheds some light on the qualitative behavior of the throughput and how it depends on the ``coherence time'' of the energy arrival process. Specifically, this formula exhibits different behavior in three different regimes, depending on the parameters of the communication system.
机译:这项工作研究了具有随机能量到达和有限电池的能量采集系统的在线功率控制问题。能量到达的随机模型是块i.i.d.,其中能量到达在固定的持续时间内是恒定的,但是可以在不同的块之间独立地改变。我们针对伯努利能量到达的情况提出了一种简单的在线功率控制策略,并证明了其与最佳吞吐量的性能差距受到一个常数的限制,该常数与问题的参数无关。这也为近似最佳的长期平均吞吐量产生了一个简单的公式,这为吞吐量的定性行为以及它如何取决于能量到达过程的``相干时间''提供了一些启示。具体来说,根据通信系统的参数,此公式在三种不同的情况下表现出不同的行为。

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