Improved differential evolution based PA energy efficiency optimization scheme with joint polarization-QAM in OFDM systems

Jianbo Shi, Fangfang Liu, Chunyan Feng, Shulun Zhao
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Abstract

To optimize the energy efficiency of non-linear power amplifier (PA) in orthogonal frequency division multiplexing (OFDM) systems, an energy efficiency optimization scheme based on improved differential evolution algorithm is proposed. The scheme utilizes joint polarization-QAM to promote energy efficiency by taking the advantages of both QAM and polarization modulation in the linear and nonlinear areas of PA, respectively. However, the energy efficiency is effected by the changes of the factors such as modulation orders, PA characteristics, channel of polarization mode dispersion, channel compensation matrix and symbol error rate (SER) and data rate requirements. In addition, they can also interact with each other. To optimize energy efficiency, the energy efficiency maximization problem regarding these factors is formulated, and an improved algorithm based on differential evolution is proposed to obtain competitive performance when solving the problem. Therefore, the energy efficiency optimization scheme in this paper enables not only adaptation of modulation as adaptive polarization-QAM scheme, but also joint adjustment of PA characteristics and channel compensation matrix to achieve higher energy efficiency. The simulation results under the same SER threshold show that the energy efficiency of proposed energy efficiency optimization scheme based on improved differential evolution with joint polarization-QAM can be improved by up to 43% compared with adaptive polarization-QAM scheme in OFDM systems.
OFDM系统中基于改进差分进化的联合极化- qam优化方案
为了优化正交频分复用(OFDM)系统中非线性功率放大器(PA)的能量效率,提出了一种基于改进差分进化算法的能量效率优化方案。该方案利用联合极化-QAM,分别利用QAM和偏振调制在PA的线性和非线性区域的优势,提高能源效率。然而,能量效率受调制阶数、PA特性、信道偏振模色散、信道补偿矩阵、符号误码率(SER)和数据速率要求等因素的影响。此外,它们还可以相互交互。为了优化能源效率,提出了考虑这些因素的能源效率最大化问题,并提出了一种基于差分进化的改进算法,在求解问题时获得具有竞争力的性能。因此,本文的能效优化方案不仅可以作为自适应极化- qam方案来适应调制,还可以联合调整PA特性和信道补偿矩阵来实现更高的能效。在相同SER阈值下的仿真结果表明,在OFDM系统中,与自适应极化qam方案相比,提出的基于改进差分进化的联合极化qam能效优化方案的能效提高幅度可达43%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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