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Reconstruction of Correlated Sources With Energy Harvesting Constraints in Delay-Constrained and Delay-Tolerant Communication Scenarios

机译:在时延约束和时延容忍的通信场景中具有能量收集约束的相关源的重构

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In this paper, we investigate the reconstruction of time-correlated sources in a point-to-point communications scenario comprising an energy-harvesting sensor and a Fusion Center (FC). Our goal is to minimize the average distortion in the reconstructed observations by using data from previously encoded sources as side information. First, we analyze a delay-constrained scenario, where the sources must be reconstructed before the next time slot. We formulate the problem in a convex optimization framework and derive the optimal transmission (i.e., power and rate allocation) policy. To solve this problem, we propose an iterative algorithm based on the subgradient method. Interestingly, the solution to the problem consists of a coupling between a 2-D directional water-filling algorithm (for power allocation) and a reverse water-filling algorithm (for rate allocation). Then, we find a more general solution to this problem in a delay-tolerant scenario where the time horizon for source reconstruction is extended to multiple time slots. Finally, we provide some numerical results that illustrate the impact of delay and correlation in the power and rate allocation policies, and in the resulting reconstruction distortion. We also discuss the performance gap exhibited by a heuristic online policy derived from the optimal (offline) one.
机译:在本文中,我们研究了在包含能量收集传感器和融合中心(FC)的点对点通信方案中时间相关源的重构。我们的目标是通过使用来自先前编码源的数据作为辅助信息来最大程度地减少重建观测值中的平均失真。首先,我们分析延迟受限的情况,其中必须在下一个时隙之前重建源。我们在凸优化框架中表述问题,并得出最佳传输(即功率和速率分配)策略。为了解决这个问题,我们提出了一种基于次梯度法的迭代算法。有趣的是,该问题的解决方案包括二维定向注水算法(用于功率分配)和反向注水算法(用于速率分配)之间的耦合。然后,我们在容忍延迟的情况下找到了针对该问题的更通用的解决方案,其中将源重构的时间范围扩展到多个时隙。最后,我们提供了一些数值结果,这些结果说明了延迟和相关性对功率和速率分配策略以及由此产生的重构失真的影响。我们还讨论了从最优(离线)策略启发式在线策略表现出的性能差距。

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