论文标题
基于规定的拉格朗日的电路合成
Circuit Synthesis based on Prescribed Lagrangian
论文作者
论文摘要
我们在这里推进了基于规定的二次拉格朗日的电路合成的算法。那就是电路演化方程等同于相关的欧拉 - 拉格朗日方程。所提出的合成是一种系统的方法,它允许实现Lagrangian在无损电路中描述的任何有限的维度物理系统,以使其演变方程相等。合成电路由(i)相应电容和电感的(ii)循环的(i)电容器和负值的电容器和电感器组成。电路拓扑设计基于一组LC基本环(F-Loops),该回路由GLC链接耦合,每个链路都串联连接连接的旋转器,电容器和电感器。基础拉格朗日的独立变量集以F-Loop电荷定义为相应电流的时间积分。所有F-Loops的EL方程式是Kirchhoff电压法律的,而Kirchhoff现行法律自然而然地由耦合的F-LOOPS设置以及相应的费用和电流。所提出的综合尤其为电路中所需的光谱特性的有效实现。该合成还提供了一种通过基本电容器和电感器的正相或负电容和电感的电容器和电感器来实现任意相互电容和电感的方法。
We advance here an algorithm of a synthesis of an electric circuit based on prescribed quadratic Lagrangian. That is the circuit evolution equations are equivalent to the relevant Euler-Lagrange equations. The proposed synthesis is a systematic approach that allows to realize any finite dimensional physical system described by a Lagrangian in a lossless electric circuit so that their evolution equations are equivalent. The synthesized circuit is composed of (i) capacitors and inductors of positive or negative values for the respective capacitances and inductances, and (ii) gyrators. The circuit topological design is based on the set of LC fundamental loops (f-loops) that are coupled by GLC-links each of which is a serially connected gyrator, capacitor and inductor. The set of independent variables of the underlying Lagrangian is identified with f-loop charges defined as the time integrals of the corresponding currents. The EL equations for all f-loops account for the Kirchhoff voltage law whereas the Kirchhoff current law holds naturally as consequence of the setup of the coupled f-loops and the corresponding charges and currents. The proposed synthesis in particular provides for efficient implementation of the desired spectral properties in an electric circuit. The synthesis provides also a way to realize arbitrary mutual capacitances and inductances through elementary capacitors and inductors of positive or negative respective capacitances and inductances.