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On Stochastic Link and Energy Scheduling for Energy Harvesting Bidirectional Communications

机译:关于能源收集双向通信的随机链路与能量调度

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摘要

In this paper, a solar-powered bidirectional communication system is studied for a pair of energy harvesting (EH) nodes that intend to communicate with each other over wireless fading channels. The conventional time-division duplex (TDD) transmission is revisited by proposing a stochastic resource scheduling scheme to minimize an average rate outage probability based on a Markov decision process (MDP) design framework. Different from the conventional TDD transmission, the proposed scheme can adjust the link direction and energy expenditure for data transmissions between the two EH nodes, in response to the dynamics of the solar EH, channel fading and battery storage conditions. A downstairs threshold structure is theoretically proved under a special optimal on-off policy, in which two-dimensional thresholds pinpoint the interplay between the transmission actions and the available energy in the batteries of the two nodes. Also the optimal on-off policy at asymptotically high signal-to-noise power ratios (SNRs) is revealed. The outage performance of the proposed stochastic resource scheduling scheme is validated by extensive computer simulations, and it shows that the proposed optimal MDP policy can achieve significant performance gains over the combinations of other compared schemes, including round-robin and battery state-oriented link scheduling schemes, and greedy and conservative energy scheduling schemes.
机译:在本文中,研究了一对能量收集(EH)节点的太阳能双向通信系统,该节点旨在通过无线衰落通道彼此通信。通过提出随机资源调度方案来重新求传统的时分双工(TDD)传输,以最小化基于Markov决策过程(MDP)设计框架的平均速率中断概率。与传统的TDD传输不同,所提出的方案可以调整两个EH节点之间的数据传输的链路方向和能量消耗,响应于太阳能EH,信道衰落和电池存储条件的动态。理论上在特殊的最佳开关策略下理论上证明了楼下的阈值结构,其中二维阈值可以针对两个节点的电池中的传输动作和可用能量之间的相互作用。还揭示了渐近高信噪比(SNR)处的最佳开关策略。通过广泛的计算机模拟验证了所提出的随机资源调度方案的停电性能,并显示所提出的最佳MDP策略可以通过其他比较方案的组合来实现显着性能,包括循环和电池导向的链路调度方案,贪婪和保守能源调度方案。

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