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A new assessment of pHEMT models by comparing relative errors of drain current and its derivatives up to the third order

机译:通过比较漏极电流及其导数至三阶的相对误差,对pHEMT模型进行新的评估

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摘要

At present, there are relatively more precise pHEMT models available for computer-aided design, and they are frequently compared to each other. However, such comparisons are mostly based on absolute errors of drain-current equations and their derivatives. In the paper, a novel method is suggested based on relative root-mean-square errors of both drain current and its derivatives up to the third order. Moreover, the relative errors are then relativized to the best model in each category to further clarify obtained accuracies of the drain current and its derivatives. Furthermore, one our older and two newly suggested models are also included in the comparison with the traditionally accurate Ahmed, TOM2 and Materka ones. The assessment is performed using measured characteristics of a 110 GHz pHEMT. Finally, a usability of the models of the higher-order derivatives is illustrated using an IP3 computation/measurement of a multi-constellation receiver for a satellite navigation with ATF-54143.
机译:当前,有相对更精确的pHEMT模型可用于计算机辅助设计,并且经常将它们相互比较。然而,这种比较主要是基于漏极电流方程及其导数的绝对误差。本文提出了一种新的方法,该方法基于漏极电流及其导数直至三阶的相对均方根误差。此外,然后将相对误差归纳为每种类别中的最佳模型,以进一步阐明获得的漏极电流及其导数的精度。此外,与传统上准确的Ahmed,TOM2和Materka的比较中还包括我们一个较旧的模型和两个新建议的模型。使用110 GHz pHEMT的测量特性执行评估。最后,使用多星座接收器的IP3计算/测量(用于带有ATF-54143的卫星导航)说明了高阶导数模型的可用性。

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