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Node and mesh analysis by inspection

机译:通过检查进行节点和网格分析

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This paper shows how to write node or mesh analysis linear circuit equations by inspection of the circuit schematic diagram and obtains two different matrix solutions of these equations. The linear circuit can have resistances or impedances, controlled sources, ideal operational amplifiers, or mutually coupled coils. The first matrix solution finds the node-voltage or mesh-current vector in terms of matrix operations with the inspection matrices. Also, this method gives a matrix solution for any arbitrary output vector in terms of the node-voltage or mesh-current solution vector, the independent-source vector, and the inspection matrices. The second matrix solution method finds the solution for a vector consisting of all node voltages or mesh currents, dependent sources, controlling variables, and any output variable(s) using a single matrix equation. Matrix methods of circuit analysis are now appropriate for student use because of the existence of calculators capable of solving large matrices and the availability of inexpensive math programs for personal computers.
机译:本文通过检查电路原理图展示了如何编写节点或网格分析线性电路方程式,并获得了这些方程式的两个不同矩阵解。线性电路可以具有电阻或阻抗,受控源,理想的运算放大器或相互耦合的线圈。第一个矩阵解决方案根据检查矩阵的矩阵运算来找到节点电压或网格电流矢量。同样,该方法根据节点电压或网格电流解向量,独立源向量和检查矩阵为任意输出向量提供矩阵解。第二种矩阵求解方法使用一个矩阵方程式来找到由所有节点电压或网格电流,从属源,控制变量以及任何输出变量组成的向量的解。电路分析的矩阵方法现在适合学生使用,因为存在能够解决大型矩阵的计算器,并且可以使用廉价的个人计算机数学程序。

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