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Analysis of Electronic Circuits with the Signal Flow Graph Method

机译:用信号流图法分析电子电路

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In this work a method called "signal flow graph (SFG)" is presented. A signal-flow graph describes a system by its signal flow by directed and weighted graph; the signals are applied to nodes and functions on edges. The edges of the signal flow graph are small processing units, through which the incoming signals are processed in a certain form. In this case, the result is sent to the outgoing node. The SFG allows a good visual inspection into complex feedback problems. Furthermore such a presentation allows for a clear and unambiguous description of a generating system, for example, a netview. A Signal Flow Graph (SFG) allows a fast and practical network analysis based on a clear data presentation in graphic format of the mathematical linear equations of the circuit. During creation of a SFG the Direct Current-Case (DC-Case) was observed since the correct current and voltage directions was drawn from zero frequency. In addition, the mathematical axioms, which are based on field algebra, are declared. In this work we show you in addition: How we check our SFG whether it is a consistent system or not. A signal flow graph can be verified by generating the identity of the signal flow graph itself, illustrated by the inverse signal flow graph (SFG~(-1)). Two signal flow graphs are always generated from one circuit, so that the signal flow diagram already presented in previous sections corresponds to only half of the solution. The other half of the solution is the so-called identity, which represents the (SFG~(-1)). If these two graphs are superposed with one another, so called 1-edges are created at the node points. In Boolean algebra, these 1-edges are given the value 1, whereas this value can be identified with a zero in the field algebra.
机译:在这项工作中,提出了一种称为“信号流图(SFG)”的方法。信号流图通过有向图和加权图来描述系统的信号流;信号被施加到边缘的节点和功能上。信号流图的边缘是小型处理单元,通过该处理单元可以以某种形式处理输入信号。在这种情况下,结果将发送到传出节点。 SFG可以对复杂的反馈问题进行良好的视觉检查。此外,这样的呈现允许对生成系统(例如,netview)进行清楚而明确的描述。信号流图(SFG)基于电路数学线性方程的图形格式的清晰数据表示,可以进行快速而实用的网络分析。在创建SFG期间,由于从零频率提取了正确的电流和电压方向,因此观察到了直流电流情况(DC-Case)。此外,还声明了基于场代数的数学公理。在这项工作中,我们还向您展示:我们如何检查我们的SFG,无论它是否是一致的系统。可以通过生成信号流图本身的身份来验证信号流图,如逆信号流图(SFG _(-1))所示。始终从一个电路生成两个信号流程图,因此前面各节中已经介绍的信号流程图仅对应解决方案的一半。解决方案的另一半是所谓的身份,它表示(SFG _(-1))。如果这两个图相互叠加,则在节点处创建所谓的1边。在布尔代数中,这些1边的值为1,而在场代数中此值可以标识为零。

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