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An Energy Efficient Subcarrier-power Allocation scheme for Polarization-Amplitude-Phase Modulation in channel with Polarization Mode Dispersion

机译:具有极化模式色散的信道中极化-幅度-相位调制的高能效子载波功率分配方案

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An Energy Efficient Subcarrier-power Allocation (EESA) scheme is proposed to improve the Power Amplifier (PA) energy efficiency. The proposed scheme is applied for the Polarization-Amplitude-Phase Modulation (PAPM) in the channel with Polarization Mode Dispersion (PMD). Considering a multiuser downlink system, utilizing the diversity of the polarization characteristic on each subcarrier caused by PMD, EESA scheme can make PA energy efficiency optimal under the constraint of each user terminal's data demand. To reduce the allocation's computationally complexity, the EESA scheme performs the subcarrier allocation and power allocation separately. Firstly, by assuming the equal power distribution, the subcarrier is allocated through Differential Evolution (DE); then based the obtained subcarrier allocation method, a two-step allocation algorithm is presented to distribute the PA input power on each subcarrier. Through numerical calculation, the optimal parameters setting of DE is examined. Our results show that the EESA scheme is able to achieve significant improvement in PA energy efficiency.
机译:提出了一种节能的子载波 - 功率分配(EESA)方案来提高功率放大器(PA)能效。所提出的方案用于具有偏振模式色散(PMD)的信道中的偏振幅度相位调制(PAPM)。考虑多用户下行链路系统,利用由PMD引起的每个子载波的偏振特性的分集,EESA方案可以在每个用户终端的数据需求的约束下使PA能效优化。为了降低分配的计算复杂性,EESA方案分别执行子载波分配和功率分配。首先,通过假设等等的功率分布,通过差分演进(DE)分配子载波;然后基于所获得的子载波分配方法,提出了一种两步分配算法以在每个子载波上分配PA输入电源。通过数值计算,检查DE的最佳参数设置。我们的研究结果表明,EESA方案能够实现PA能源效率的显着提高。

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