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首页> 外文期刊>Wireless Communications Letters, IEEE >Power Allocation for Energy Harvesting Wireless Communications With Energy State Information
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Power Allocation for Energy Harvesting Wireless Communications With Energy State Information

机译:具有能量状态信息的能量收集无线通信的能量分配

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摘要

Power allocation is investigated for a wireless transceiver pair, in which the transmitter is powered by energy harvesting and some knowledge of the energy arrival process is known. We propose to perform power allocation in two levels. In the upper level, average transmit power is allocated for stages (a stage contains a number of fading blocks). In the lower level, power allocation over fading blocks is performed within each stage, given average transmit power level allocated in the upper level for the stage. Optimal solution to the lower level that aims at ergodic capacity maximization is obtained in semi-closed-form. The upper level aims at maximization of the system throughput over the stages. As the upper-level problem is nonconvex, by using an approximation, we transform the problem into a monotonic optimization problem, which can be solved by existing numerical algorithms. Simulation demonstrates that, compared to an exhaustive search method, our proposed method has significantly less running time, at the cost of a not-significant throughput loss.
机译:研究了无线收发器对的功率分配,在无线对中,通过能量收集为发射器供电,并且已知一些有关能量到达过程的知识。我们建议在两个级别上执行功率分配。在较高级别,平均发射功率分配给各个阶段(一个阶段包含多个衰落块)。在较低层中,给定在较高级中为该级分配的平均发射功率水平,则在每个级中在衰落块上执行功率分配。以半封闭形式获得了针对遍历容量最大化的较低级别的最优解。较高级别的目标是使各个阶段的系统吞吐量最大化。由于上层问题是非凸的,因此通过近似将问题转化为单调优化问题,可以通过现有的数值算法来解决。仿真表明,与穷举搜索方法相比,我们提出的方法具有显着更少的运行时间,但代价是吞吐量损失不明显。

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