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On the dynamic equations of linear multiconductor transmissionlines with terminal nonlinear multiport resistors

机译:带有终端非线性多端口电阻器的线性多导体传输线的动力学方程

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Distributed circuits composed of linear multiconductor transmission lines and terminated with nonlinear weakly active multiport resistors are considered. The line is represented as a linear dynamic multiport through recursive convolution relations and special considerations are given to some general properties of the line impulse responses. The convolution technique allows the mathematical description of these distributed circuits by means of a set of nonlinear algebraic-integral equations of Volterra type for the terminal voltages and currents. The conditions under which these governing equations can be reformulated as a set of Volterra integral equations of second kind in normal form are given with the explicit means for doing so. These conditions also assure the existence and the uniqueness of the solution. In particular if the terminal multiport resistors are strictly locally passive, then the normal form exists and the solution is unique. Transmission lines with terminal multiport resistors that are locally active may not admit a normal form for the governing equations, and hence, several solutions that have the same initial conditions are possible. In these cases a simple method is presented for revising the original network model so that the normal form exists, and hence, the uniqueness of solution is assured, under mild restrictions
机译:考虑由线性多导体传输线组成并以非线性弱有源多端口电阻器作为终端的分布式电路。该线通过递归卷积关系表示为线性动态多端口,并且对线脉冲响应的一些一般属性进行了特殊考虑。通过卷积技术,可以通过一组Volterra型非线性代数-积分方程,对端子电压和电流进行数学描述。给出了将这些控制方程重新构造为第二种形式的第二类Volterra积分方程的条件,并给出了明确的实现条件。这些条件还确保了解决方案的存在和唯一性。特别是如果端子多端口电阻严格地是本地无源的,则存在正常形式,并且解决方案是唯一的。带有局部活动的终端多端口电阻器的传输线可能不接受控制方程式的正常形式,因此,几种具有相同初始条件的解决方案是可能的。在这种情况下,提出了一种简单的方法来修改原始网络模型,以便存在正常形式,因此在温和的限制下可以确保解决方案的唯一性

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