Development of Numerical Modeling for Finding Reflection and Transmission Coefficients in an Engineering Learning Paradigm of Computational Thinking

Ikram E Khuda
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Abstract

In electromagnetics and antenna engineering, reflection and transmission coefficients are important parameters to be evaluated statistically and numerically to obtain effective computer simulations. This paper proposes a pedagogy to understand the development methodology of numerical reflection and transmission coefficient models. The proposed method employs relatively easy mathematics instead of the conventional ways that use difficult mathematics. These are then simulated as computer models. The study in this paper included a medium comprising of air and glass placed in it. Firstly, the region was divided into a gridded structure where the grids were mathematically formulated. Points on the grid were distinguished between different media using electrical permittivity and conductivity. The grids included boundary conditions and electric field wave propagation through them. Both boundary conditions and field equations were numerically modelled and discretized using the finite difference method with a proportional h2 error. This method provided a system of linear equations, which were then solved linearly to obtain the required reflection and transmission coefficients. An important aspect of the presented work is to provide an example approach for computational thinking (CT), which is now considered an important part of any engineering curriculum
在计算思维的工程学习范式中寻找反射系数和透射系数的数值模型的发展
在电磁学和天线工程中,反射系数和透射系数是进行统计和数值计算以获得有效计算机模拟的重要参数。本文提出了一种理解数值反射系数和透射系数模型的开发方法的教学法。所提出的方法采用相对简单的数学,而不是使用困难的数学传统方法。然后将其模拟成计算机模型。本文研究了一种由空气和放置在其中的玻璃组成的介质。首先,将该区域划分为网格结构,并对网格进行数学表示。利用介电常数和电导率来区分网格上的点。网格包括边界条件和电场波在其中的传播。采用有限差分法对边界条件和场方程进行了数值模拟和离散,误差为比例h2。该方法提供了一个线性方程组,然后对方程组进行线性求解,得到所需的反射系数和透射系数。所提出的工作的一个重要方面是为计算思维(CT)提供一个示例方法,这现在被认为是任何工程课程的重要组成部分
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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