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Comparing lumped and distributed parameters models in transmission lines during transient conditions

机译:在瞬态条件下比较传输线中的集总和分布参数模型

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The solutions of differential equations of transmission line are generally difficult to obtain due to the convolution integral present. Considering this, there are models proposed for the study of electromagnetic transients in transmission line. In this paper a single-phase transmission line is represented by two models. The first model represents the transmission line by its distributed parameters and its differential equations in the time domain are transformed into algebraic equations in the frequency domain. This model is named ULM. Once the solutions were obtained in the frequency domain, using the ILT implemented numerically, the solutions are obtained in the time domain. The second model uses lumped circuits parameters and it considers the transmission line represented by π-circuits connected in cascade. This model has the advantage of being developed directly in the time domain, but there is a need to apply numerical integration methods to solve the equations. A fact observed in the responses using this models is the spurious oscillations. In this paper are shown spurious oscillations presents in simulations and using FT to analyze the spectral content of this oscillations for a single-phase transmission line considering different conditions as its length, represented by different quantities of π-circuit and submitted to diverse conditions of energization.
机译:由于卷积积分的存在,通常难以获得传输线的微分方程的解。考虑到这一点,提出了用于在传输线中研究电磁瞬变的模型。在本文中,单相传输线由两个模型表示。第一模型表示其分布式参数的传输线,并且时域中的差分方程被转换为频域中的代数方程。此模型名为ULM。一旦在频域中获得了解决方案,使用数值实现的轴线,在时域中获得了解决方案。第二种模型使用集总电路参数,并考虑由级联连接的π电路表示的传输线。该模型具有在时域中直接开发的优点,但需要应用数字集成方法来解决方程。使用此模型的响应中观察到的事实是虚假振荡。本文示出了杂散振荡,在模拟中呈现,并使用FT分析考虑不同条件的单相传输线的这种振荡的光谱含量,其长度为其长度,由不同量的π电路提交到不同的通电条件。 。

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