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Analytical Reflection Coefficient Expressions Utilizing Load-Dependent src='/images/tex/380.gif' alt='X'> -Parameters

机译:使用依赖于负载的 src =“ / images / tex / 380.gif” alt =“ X”> -参数的分析反射系数表达式

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摘要

In this paper, analytical expressions of the input reflection coefficient at the source and the load ports of a two-port active microwave component are proposed. It utilizes the load-dependent -parameters in the development of these expressions. In contrast to the classical small-signal -parameters based approach, the cross frequency conversions and harmonic mismatch effects are taken into consideration in this method. In the derivation, the incident and the scattered waves of the amplifier are all represented in a matrix structure. Since the coefficient determinants of the input and output vectors are equals to zero, it is hard to obtain the analytical solutions. Therefore, the order reduction of the matrix under certain principles is introduced to solve this problem. Throughout the derivation process, the matrix transformation and the calculations are performed using only simple complex operations. Therefore, the function analyticity is transmitted from the load-dependent -parameter mathematical model to the proposed expressions. Finally, the proposed method is experimentally validated on two microwave amplifier circuits.
机译:本文提出了两端口有源微波元件在源和负载端口的输入反射系数的解析表达式。在这些表达式的开发中,它利用了与负载有关的参数。与经典的基于小信号参数的方法相比,该方法考虑了交叉频率转换和谐波失配效应。在推导中,放大器的入射波和散射波都以矩阵结构表示。由于输入和输出矢量的系数行列式等于零,因此很难获得解析解。因此,引入矩阵在某些原理下的降阶来解决这个问题。在整个推导过程中,仅使用简单的复杂运算即可执行矩阵变换和计算。因此,功能分析性从负载相关的参数数学模型传递到所提出的表达式。最后,该方法在两个微波放大器电路上进行了实验验证。

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