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Symbolic Analysis of Nullor-Based Circuits with the Two-Graph Technique

机译:基于两图技术的基于零电路的符号分析

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Symbolic analysis is a powerful tool which accelerates the electronic design process by providing insight about the behavior of a circuit. Recently, the analysis and synthesis of electronic circuits with nullors have received considerable attention. This is due to the fact that nullors are very flexible and versatile active elements. Very efficient analysis methods, such as nodal analysis, Coates flow graphs, and two-graphs are proposed in the literature and are widely used. It has arguably been reported (because it does not generate vanishing terms in the symbolic network functions) that the last cited analysis method may be considered as the most promising. Actually, using the two-graph method, symbolic transfer functions can be calculated via either signal flow graphs and Mason's formula, without any restriction on the type of the sources (dependent and independent), or the spanning tree enumeration method for RLC circuits with nullor equivalent circuits of independent voltage sources and all types of controlled sources. In this paper we propose a new method for symbolic analysis of circuits with nullors using the two-graph method in both versions, i.e. signal flow graphs and enumeration of spanning trees. This new method helps us to see distinctly the relationships between various circuit components (for the method using the signal flow graph) and enables us to calculate the symbolic network functions without the excess terms (for the method using the enumeration of spanning trees).
机译:符号分析是一种强大的工具,可通过提供有关电路行为的洞察力来加速电子设计过程。近来,具有零值的电子电路的分析和合成已引起相当大的关注。这是由于无效变量是非常灵活且用途广泛的活动元素这一事实。文献中提出了非常有效的分析方法,例如节点分析,Coates流图和两幅图,并得到了广泛的使用。可以说(因为它不会在符号网络函数中生成消失的术语)据报道,最后引用的分析方法可能被认为是最有前途的。实际上,使用两图方法,可以通过信号流图和梅森公式来计算符号传递函数,而对信源类型(从属和独立)的类型没有任何限制,或者对于具有零或零的RLC电路,可以使用生成树枚举方法独立电压源和所有类型受控源的等效电路。在本文中,我们提出了一种在两种版本中都使用两图方法对零值电路进行符号分析的新方法,即信号流图和生成树枚举。这种新方法有助于我们清楚地看到各个电路组件之间的关系(对于使用信号流图的方法),并使我们能够计算符号网络函数而没有多余的项(对于使用生成树枚举的方法)。

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