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Sub-optimal matching method for dual-band class-J power amplifier using real frequency technique

机译:基于实频技术的双频J类功率放大器的次优匹配方法

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摘要

A passive network possessing an input impedance which is positive real in nature poses difficulties with regard to obtaining an optimal impedance for power amplifiers (PAs) with two uncorrelated frequencies. In this context, this study presents a sub-optimal dual-band matching method via real frequency technique. Theoretical analysis is presented for voltage waveform with four independent variables and boundary conditions are given for not lower than zero region. To increase the possibility of acquiring a matching network, a sub-optimal but broad design space is defined according to acceptable performance. It is more practical to match dual-band or broadband PAs because a single fundamental harmonic impedance point could be corresponding to a set of the second harmonics in the new design space, vice versa. Thus, the sub-optimal solution space is bounded from region-to-region between the required fundamental and second harmonic impedances. An enhanced cost function based on driving point function that could better describe harmonic impedance mismatching degree is also proposed for harmonics control. Finally, a dual-band PA is designed to demonstrate the general matching method. The peak efficiency is about 70% and saturated output power is 41 dBm in both bands.
机译:具有实际上为正实输入阻抗的无源网络在获得具有两个不相关频率的功率放大器(PA)的最佳阻抗方面存在困难。在这种情况下,本研究提出了一种通过实频率技术的次优双频匹配方法。对具有四个自变量的电压波形进行了理论分析,并给出了不低于零区域的边界条件。为了增加获取匹配网络的可能性,根据可接受的性能定义了次优但较宽的设计空间。匹配双频或宽带PA更为实用,因为单个基波谐波阻抗点可能对应于新设计空间中的一组二次谐波,反之亦然。因此,次优解空间在所需的基波和第二谐波阻抗之间从一个区域到另一个区域被限制。还提出了一种基于驱动点函数的增强成本函数,可以更好地描述谐波阻抗失配程度,用于谐波控制。最后,设计了双频段功率放大器来演示通用匹配方法。在两个频带中,峰值效率约为70%,饱和输出功率为41 dBm。

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