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Polarization Mode Dispersion Tolerant Subcarrier-Power Allocation for Improving the Power Amplifier Energy Efficiency of Joint Polarization-Amplitude-Phase Modulation

机译:极化模式色散容忍子载波功率分配,以提高联合极化-幅度-相位调制的功率放大器的能效

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A Polarization Mode Dispersion Tolerant Subcarrier-power Allocation (PMDTSA) scheme is proposed to improve the Power Amplifier (PA) energy efficiency. The proposed scheme is applied in the multiuser downlink system based on Joint Polarization-Amplitude-Phase Modulation (JPAPM). Dut to the wireless channel's polarization mode dispersion effect, the polarization based impairment to JPAPM on each subcarrier will be diverse. Through the optimal subcarrier-power allocation, such diversity can be utilized to make PA energy efficiency optimal under the constraint of each user terminal's data rate demand. To reduce the allocation's computationally complexity, the PMDTSA scheme performs the subcarrier allocation and power allocation separately. Firstly, assuming the equal power distribution, the subcarrier is allocated through Particle Swarm Optimization (PSO); 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 PSO is examined. Our results show that the proposed PMDTSA scheme is able to achieve significant improvement in PA energy efficiency.
机译:提出了一种极化模式色散容忍子载波功率分配(PMDTSA)方案,以提高功率放大器(PA)的能效。所提出的方案被应用于基于联合极化-幅度-相位调制(JPAPM)的多用户下行链路系统中。由于无线信道的极化模式色散效应,每个子载波上基于极化的JPAPM损害将是多种多样的。通过最佳子载波功率分配,可以利用这种分集来在每个用户终端的数据速率需求的约束下使PA能量效率达到最佳。为了降低分配的计算复杂度,PMDTSA方案分别执行子载波分配和功率分配。首先,假设功率分配相等,则通过粒子群优化(PSO)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,将功率放大器的输入功率分配到每个子载波上。通过数值计算,研究了粒子群优化算法的最优参数设置。我们的结果表明,提出的PMDTSA方案能够显着提高PA的能源效率。

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