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Optimal Policies for Wireless Networks With Energy Harvesting Transmitters and Receivers: Effects of Decoding Costs

机译:具有能量收集发送器和接收器的无线网络的最佳策略:解码成本的影响

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We consider the effects of decoding costs in energy-harvesting communication systems. In our setting, receivers, in addition to transmitters, rely solely on energy harvested from nature, and need to spend some energy in order to decode their intended packets. We model the decoding energy as an increasing convex function of the rate of the incoming data. In this setting, in addition to the traditional constraints at the transmitters, we have the constraints at the receivers, where energy spent by the receiver for decoding cannot exceed its harvested energy. We first consider the point-to-point single-user problem where the goal is to maximize the total throughput by a given deadline subject to both energy and decoding causality constraints. We show that decoding costs at the receiver can be represented as at the transmitter, and thereby moving all system constraints to the transmitter side. Then, we consider several multiuser settings. We start with a two-hop network where the relay and the destination have decoding costs, and show that policies, where the transmitter’s throughput is maximized irrespective of the relay’s transmission energy profile, are optimal. Next, we consider the multiple access channel (MAC) and the broadcast channel (BC) where the transmitters and the receivers harvest energy from nature, and characterize the maximum departure region. In all multiuser settings considered, we decompose our problems into inner and outer problems. We solve the inner problems by exploiting the structure of the particular model, and solve the outer problems by water-filling algorithms.
机译:我们考虑了能量收集通信系统中解码成本的影响。在我们的环境中,除了发送器之外,接收器还完全依赖于从自然界中获取的能量,并且需要花费一些能量才能解码其预期的数据包。我们将解码能量建模为传入数据速率的递增凸函数。在这种设置下,除了发射器上的传统约束外,我们还有接收器上的约束,在接收器上,接收器用于解码的能量不能超过其收获的能量。我们首先考虑点对点单用户问题,该问题的目标是在给定的期限内使总吞吐量最大化,同时受能量和解码因果关系约束。我们表明,可以将接收器的解码成本表示为发送器的解码成本,从而将所有系统约束移到发送器侧。然后,我们考虑几种多用户设置。我们从两跳网络开始,在该网络中,中继站和目标站要承担解码成本,并表明策略是最佳的,即无论中继站的传输能量分布如何,发射机的吞吐量都达到最大。接下来,我们考虑多路访问信道(MAC)和广播信道(BC),在该信道中,发送器和接收器从自然界中获取能量,并表征最大离开区域。在所有考虑的多用户设置中,我们将问题分解为内部和外部问题。我们通过利用特定模型的结构解决内部问题,并通过注水算法解决外部问题。

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