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Vector Wave Digital Filters and Their Application to Circuits With Two-Port Elements

机译:矢量波数字过滤器及其在与双端口元素电路的应用

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摘要

Wave Digital Filters (WDFs) turn circuits into networks of input-output relationships that can be computed in an explicit fashion. This is done through a linear port-wise mapping of Kirchhoff variables into pairs of incident-reflected waves introducing one scalar free parameter per port, called reference port resistance. Parameters are then used to eliminate the implicit equations relating wave variables, referred to as delay-free-loops. Unfortunately, this methodology can only be applied under strong linearity and topological conditions. This manuscript presents an extension of the WDF formalism involving a novel "cross-port" vector definition of waves, whose reference resistance is a matrix of free parameters. This generalization greatly simplifies the WDF implementation of circuits with two-port elements, such as operational amplifiers. It allows us to derive wave-based descriptions of elements such as nullors, for which no scattering relation is available in the literature. Moreover, it enables a full adaptation of a wide class of two-port elements, thus avoiding the delay-free-loops that would otherwise form in traditional WDFs. This new formalism allows us to implement a wider range of circuits with two-port elements in a modular fashion, since the topology and the elements can be modeled independently.
机译:波数字过滤器(WDF)将电路转换为以明确方式计算的输入输出关系网络。这是通过Kirchhoff变量的线性端口映射来完成的,成对的入射反射波,引入每个端口的一个标量参数,称为参考端口电阻。然后使用参数来消除与波变量相关的隐式方程,称为延迟循环。不幸的是,这种方法只能在强大的线性度和拓扑条件下应用。该稿件介绍了WDF形式主义的延伸,涉及新颖的“跨端口”矢量定义的波浪,其参考电阻是自由参数的矩阵。该概括大大简化了具有双端口元件的电路的WDF实现,例如运算放大器。它允许我们派生基于波的元素的描述,例如无数的元素,其中文献中没有可用的散射关系。此外,它能够完全适应广泛的双端口元件,从而避免在传统WDF中形成的延迟循环。这种新的形式主义使我们能够以模块化方式实现与双端口元素的更广泛的电路,因为拓扑和元件可以独立建模。

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