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Graphical User Interface for Simulating Convolutional Coding with Viterbi Decoding in Digital Communication Systems using Matlab

机译:图形用户界面,用于在使用Matlab的数字通信系统中使用维特比解码来模拟卷积编码

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This paper presents Graphical User Interface (GUI) for simulating convolutional coding with Viterbi decoding in digital communication system using MATLAB. Digital transmission is not free from channel impairments such as noise, interference and fading which cause signal distortion and degradation in signal to noise ratio. These introduce a lot of errors on the information bits sent from one place to another. To address these problems, Convolutional coding is introduced at the transmitter side and Viterbi decoding at the receiver end to ensure consistent error free transmission. In order to visualize the effect and evaluate the performance of the coding and decoding used, simulation programs that encode and decode digital data were designed, written and tested in MATLAB. The generated bit error rate (BER) is plotted against Energy per bit to noise spectral density (Eb/No) for different digital input data. It is seen that as Eb/No increases, bit error rate decreases thereby increasing the performance of the convolutional code rate used in the transmission channel at both end. Further analysis and discussion were made based on the MATLAB graph results obtained.
机译:本文提出了一种图形用户界面(GUI),用于在使用MATLAB的数字通信系统中使用Viterbi解码来模拟卷积编码。数字传输无法避免信道损伤,例如噪声,干扰和衰落,这会导致信号失真和信噪比下降。这些在从一个地方发送到另一地方的信息位上引入了很多错误。为了解决这些问题,在发送器端引入了卷积编码,在接收器端引入了维特比解码,以确保一致的无差错传输。为了可视化效果并评估所使用的编码和解码的性能,在MATLAB中设计,编写和测试了对数字数据进行编码和解码的仿真程序。针对不同的数字输入数据,针对每位能量到噪声的频谱密度(Eb / No),绘制了生成的误码率(BER)。可以看出,随着Eb / No的增加,误码率降低,从而提高了传输路径两端使用的卷积码率的性能。基于获得的MATLAB图形结果进行了进一步的分析和讨论。

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