用MATLAB仿真分析理想低通滤波器的响应

IF 0.6 Q3 ENGINEERING, MULTIDISCIPLINARY Mehran University Research Journal of Engineering and Technology Pub Date : 2023-07-21 DOI:10.22581/muet1982.2303.12
M. Z. Shaikh, Khakoo Mal, Dillep Kumar, E. Ali, B. S. Chowdhry, E. Baro
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引用次数: 0

摘要

滤波器是控制工程、无线通信系统和嵌入式系统设计中使用的许多现代电子系统的关键元件。各种形式的过滤器都被认为是开发通信系统的重要子系统。理想的滤波器是不可能通过任何电子电路设计出来的,只能通过MATLAB等仿真工具来实现。本文对理想低通滤波器进行了仿真和分析。利用MATLAB软件生成理想低通滤波器的阶跃响应(Si函数)和理想低通滤波器的脉冲响应(Sinc函数)在时域和频域的响应并进行分析。这项工作的目的是在简单编程的帮助下,以适当的方式让工程专业的学生更容易理解滤波器的设计过程。其中,易于生成信号并分析理想低通滤波器响应。为了验证学习目标的实现,我们对45名电子和电信工程专业的学生进行了调查,以激发学生对学习过程的观察和兴趣。总的来说,大约75%的学生给出了积极的反馈,这表明这种类型的实验对学生的学业成绩有显著的影响。
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Simulation and analysis of ideal low pass filter response using MATLAB
Filters are the crucial element of many modern electronic systems used in control engineering, wireless communication systems, and embedded systems designs. Filters in one form or another, are considered an important subsystem in developing communication systems. The ideal filter cannot be designed through any electronic circuit and the only way is to realize using simulations tools like MATLAB. In this paper, the simulation and analysis of the ideal low pass filter is presented. The MATLAB software is used to generate and perform analysis of the step response of ideal low-pass filter (Si function) and impulse response of ideal low-pass filter (Sinc function) in time and frequency domains. The aim of the work is to provide engineering students an easier understanding of the filter design process in an appropriate way with the help of simple programming. Where, it is easy to generate signals and analyze the ideal low pass filter response. To verify achievement of learning objectives, a survey is conducted from 45 engineering students of electronic and telecommunication which elicited students’ observations and interest in the learning process. Overall about 75% of students gave positive feedback, which indicates that such type of experimentation had a significant impact on the student academic outcomes.
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0.00%
发文量
76
审稿时长
40 weeks
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