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An optimal pre-compensation based joint polarization-amplitude-phase modulation scheme for the power amplifier energy efficiency improvement

机译:基于最优预补偿的联合极化-幅度-相位调制方案,用于提高功率放大器的能效

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摘要

A Joint Polarization-Amplitude-Phase Modulation (JPAPM) scheme in wireless communication is proposed to improve the Power Amplifier (PA) energy efficiency. The proposed scheme introduces the signal's Polarization State (PS), amplitude and phase as the information-bearing parameters. Thus, the data rate can be further enhanced on the basis of the traditional amplitude-phase modulation. Also, since the transmitted signal's PS completely manipulated by orthogonally dual-polarized antennas is unaffected by the PA, JPAPM can let PA work in its nonlinear region to acquire high PA conversion efficiency. Furthermore, to mitigate the polarization-based impairment to JPAPM caused by the wireless channel's polarization dependent loss effect, the optimal pre-compensation algorithm is also presented. Simulation under the same symbol error rate and channel state shows the JPAPM can improve the PA energy efficiency significantly compared with the traditional quadrature amplitude modulation.
机译:为了提高功率放大器(PA)的能效,提出了一种在无线通信中的联合极化-幅度-相位调制(JPAPM)方案。提出的方案引入了信号的极化状态(PS),幅度和相位作为信息承载参数。因此,可以在传统的幅度相位调制的基础上进一步提高数据速率。另外,由于完全不受正交双极化天线控制的发射信号的PS不受PA的影响,JPAPM可以让PA在其非线性区域工作,以获取高PA转换效率。此外,为减轻无线信道的极化相关损耗效应对JPAPM造成的基于极化的损害,还提出了最佳的预补偿算法。在相同符号错误率和信道状态下的仿真表明,与传统的正交幅度调制相比,JPAPM可以显着提高PA的能量效率。

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