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Maximization of Total Throughput and Device Lifetime With Non-Linear Battery Properties

机译:非线性电池特性可最大化总吞吐量和设备使用寿命

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摘要

This paper considers the maximization of total throughput and device lifetime for point-to-point multiple-input multiple-output communication systems, where a transmission node has a battery which exhibits non-linear battery discharge behaviors. We adopt a battery model called Peukert's law to render the non-linear battery characteristics and formulate the battery constraint from Peukert's law. Then, we prove that the total throughput is a strictly concave function in terms of the battery lifetime under the battery constraint. Also, we derive the optimality conditions for the total throughput maximization and device lifetime maximization problems from the strict concavity, and compute the optimal solutions by a bi-section method. Furthermore, we provide a solution based on asymptotic analysis for the case, where the eigenvalue distribution of the channel matrix is not available. In the simulation section, we conduct accurate battery discharge simulations to validate this paper. We confirm that the analysis matches well with the battery simulations, and the derived optimal scheme outperforms the baseline schemes, which neglect the non-linear battery discharge properties. Also, the proposed solution based on asymptotic analysis is shown to have almost the same performance compared with the optimal solution.
机译:本文考虑了点对点多输入多输出通信系统的总吞吐量和设备寿命的最大化,该系统的传输节点具有一个表现出非线性电池放电行为的电池。我们采用一种称为Peukert定律的电池模型来呈现非线性电池特性,并根据Peukert定律制定电池约束。然后,我们证明了在电池约束下,总吞吐量是电池寿命的严格凹函数。此外,我们从严格的凹度中得出了总吞吐率最大化和设备寿命最大化问题的最优条件,并通过二分法计算了最优解。此外,针对通道矩阵的特征值分布不可用的情况,我们提供了基于渐近分析的解决方案。在仿真部分,我们进行了准确的电池放电仿真以验证本文。我们确认分析与电池仿真非常吻合,并且推导的最佳方案优于基线方案,该方案忽略了非线性电池放电特性。此外,与最佳解相比,基于渐近分析的拟议解决方案具有几乎相同的性能。

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