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Energy-efficient Power Allocation Scheme for DAS with Adaptive Modulation

机译:具有自适应调制的DAS节能功率分配方案

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This paper investigates the energy efficiency (EE) of distributed antenna system (DAS) with continuous-rate adaptive modulation (CAM) under different quality of service requirements, and develops adaptive power allocation (PA) schemes for DAS. Firstly, the EE for DAS with CAM is presented. By maximizing the EE subject to the maximum transmit power, target bit error rate (BER), and minimum spectral efficiency (SE) requirements, the optimized objective on PA is formulated. Based on this, a general form of optimal PA is derived by using the Karush-Kuhn-Tucker (KKT) conditions. Then, two cases are analyzed. One is that the SE equals the target one, and an efficient iterative algorithm to obtain the optimal PA is proposed. The other case is that the SE is larger than the target one, and an efficient method is derived to obtain the optimal number of active remote antennas. With the obtained optimal number, the closed-form power allocation is also derived by utilizing the Lambert function. The developed schemes include some existing schemes as special cases. Simulation results indicate the presented schemes are valid, can obtain the superior EE performance while meeting the target BER and minimum SE requirements.
机译:本文在不同的服务质量要求下调整了分布式天线系统(DAS)的能效(DAS),并为DAS开发了自适应电源分配(PA)方案。首先,提出了具有凸轮的ee。通过最大化EE的最大发射功率,目标位错误率(BER)和最小频谱效率(SE)要求,制定了PA的优化目标。基于此,通过使用Karush-Kuhn-Tucker(KKT)条件来源的一般形式的最佳PA。然后,分析了两种情况。一个是,提出了SE等于目标一个,并且提出了获得最佳PA的有效迭代算法。另一个情况是SE大于目标,并且导出有效的方法以获得最佳数量的活动远程天线。利用所获得的最佳数量,通过利用Lambert函数也导出闭合形式功率分配。开发方案包括一些现有方案作为特殊情况。仿真结果表明所提出的方案有效,可以在满足目标BER和最低要求时获得优越的EE性能。

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