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Active simultaneous harmonic source and load pull assisted by local polyharmonic distortion models

机译:有源同时谐波源和负载牵引通过局部多谐失真模型辅助

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The efficiency of a power amplifier is a strong function of the core transistor technology and the circuitry that is wrapped around it. There are many theoretical approaches to obtaining full DC-to-RF conversion from an ideal transistor, however real-world technologies do not perform equally well with each. The parasitic reactances and non-ideal DC characteristics of a transistor technology result in matching and bias requirements that can deviate significantly from those of ideal theory. In this paper we describe the use of an active simultaneous source and load pull system that quickly ascertains the conditions required to achieve a transistor technology's peak efficiency performance. The speed with which the system is able to achieve these results is facilitated by local polyharmonic distortion models that provide a quick and reliable method for finding the path of steepest ascent.
机译:功率放大器的效率是核心晶体管技术的强功能和缠绕在其上的电路。从理想的晶体管获得完整的DC-RF转换有许多理论方法,但是实际技术不会与每个技术同样良好。晶体管技术的寄生物电抗和非理想直流特性导致匹配和偏置要求,这些要求可能与理想理论的偏差显着偏离。在本文中,我们描述了使用有效的同步源和负载拉动系统,该系统快速确定实现晶体管技术峰值效率性能所需的条件。通过局部多方形失真模型促进了系统能够实现这些结果的速度,该模型提供了一种快速可靠的方法来查找最陡时刻的路径。

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