在集中元素基中一般形式的匹配四极矩阵的典型分量z(y)的物理可实现性条件

G. Devyatkov
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引用次数: 0

摘要

在解决宽带匹配问题时,往往需要某种形式的幅频特性。与此相关,合成同时具有校正特性的宽带匹配器件的问题就出现了,即在工作频段内功率转换系数具有给定的频率依赖性。由于反射功率的原因,宽带无功匹配校正电路在大多数实际应用中是困难的。这就导致了信号源和负载的任意阻抗在一般形式的元素基础上合成宽带匹配校正电路的问题,这一问题还没有得到充分解决。因此,有必要在复频率左半平面上寻找包含极点的一般形式双端口网络的阻抗矩阵的典型分量的物理可实现性的条件。本文定义了集总元电基上一般形式双端网络的一类典型分量的阻抗矩阵的物理可实现性的充分必要条件,当福斯特表示的本征函数的极点可以在复频率的左半平面上,不包括虚轴和实轴。这允许从单一角度合成宽带耗散匹配,匹配校正电路和匹配衰减器,在具有信号源和负载的任意阻抗的一般形式的基本基础上。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Conditions for the physical realizability of a typical component z(y)-matrix of a matching quadrupole of a general form in a concentrated elemental basis
When solving problems of broadband matching, very often there is a need for a certain form of the amplitude-frequency characteristic. In connection with this, the problem comes up of synthesizing broadband matching devices that simultaneously have correcting properties, i.e. having a given frequency dependence of the power conversion coefficient in the operating frequency band. The use of broadband reactive matching - correcting circuits in most practical cases is difficult because of the reflected power. This leads to the problem of the synthesis of broadband matching-correcting circuits with arbitrary immittances of the signal source and load in an elemental basis of a general form, containing along with reactive and active elements, which has not been adequately solved. Therefore, it becomes necessary to find the conditions for the physical realizability of a typical component of the immitance matrix of a two-port network of general form containing poles in the left half-plane of complex frequencies. In this paper the necessary and sufficient conditions are defined for the physical realizability of the immitance matrix of a typical component of a subclass of two-terminal networks of general form in a lumped elemental electric basis, when the poles of the Eigen functions in the Foster representation can be in the left half-plane of complex frequencies, excluding the imaginary and real axes. This allows to synthesis of broadband dissipative matching, matching-correcting circuits and matched attenuators in an elemental basis of a general form with arbitrary immitances of the signal source and load from a single point of view.
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