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Energy-efficiency optimization of the high Power Amplifier for multicarrier systems: Analytical EVM derivation

机译:多载波系统大功率放大器的能效优化:分析EVM推导

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The high Power Amplifier (PA) dominates the power consumption in LTE transceiver systems in macro base stations and requests focusing the energy efficiency improvements on this device. In this paper, the impact of the nonlinearities on the amplified multicarrier signal is analyzed considering both linearization and Peak-to-Average Power Ratio (PAPR) reduction techniques. Therefore, we provide the expression of the Error Vector Magnitude (EVM) of the amplified signal using polynomial predistortion and clipping techniques. The EVM expression is a series expansion that depends on the Power Amplifier (PA) and predistortion coefficients, as well as, the PAPR and the average power of both input and clipped signals. The simulation results show that the proposed expression presents perfect accuracy. Moreover, theoretical analysis of the trade-off between the power amplifier linearity and efficiency is investigated considering the performance of the clipping and predistortion techniques. Therefore, an analytical expression which gives the optimal Input Back-Off (IBO) maximizing the PA efficiency, with respect to an EVM constraint and a given predistortion complexity, is provided. Based on different application scenarios and using a real power amplifier characteristic, it is demonstrated that significant energy efficiency improvement can be achieved when the IBO is appropriately adjusted.
机译:高功率放大器(PA)主导着宏基站LTE收发器系统中的功耗,并要求将能效改进的重点放在该设备上。在本文中,考虑了线性化和峰均功率比(PAPR)降低技术,分析了非线性对放大的多载波信号的影响。因此,我们使用多项式预失真和限幅技术提供了放大信号的误差矢量幅度(EVM)的表达式。 EVM表达式是一个级数展开,取决于功率放大器(PA)和预失真系数,以及PAPR和输入信号和限幅信号的平均功率。仿真结果表明,所提出的表达式具有很好的精度。此外,考虑了削波和预失真技术的性能,研究了功率放大器线性度和效率之间折衷的理论分析。因此,提供了一种解析表达式,该解析表达式针对EVM约束和给定的预失真复杂度,给出了使PA效率最大化的最佳输入退避(IBO)。基于不同的应用场景并利用实际功率放大器的特性,证明了通过适当调整IBO可以显着提高能效。

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