IoT Using Chaotic Signals

碩士 === 中原大學 === 電機工程研究所 === 107 === Abstract This study proposes a modulation method that uses two chaotic signals combined with single sideband full-carrier (SSBFC) and on-off keying (OOK). This method can be applied to transmit digital signals in the noisy channel. The chaotic signals used are th...

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Main Authors: Kerry C. Hiponia, 柯伯瑞
Other Authors: Jia-Yin Wang
Format: Others
Language:en_US
Published: 2019
Online Access:http://ndltd.ncl.edu.tw/handle/692c75
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spelling ndltd-TW-107CYCU54420032019-05-30T03:57:34Z http://ndltd.ncl.edu.tw/handle/692c75 IoT Using Chaotic Signals 使用混沌信號的物聯網 Kerry C. Hiponia 柯伯瑞 碩士 中原大學 電機工程研究所 107 Abstract This study proposes a modulation method that uses two chaotic signals combined with single sideband full-carrier (SSBFC) and on-off keying (OOK). This method can be applied to transmit digital signals in the noisy channel. The chaotic signals used are the Van der Pol oscillator and the Lorenz attractor. They are all modulated using SSBFC, where the Van der Pol chaotic signal uses the upper sideband and the Lorenz chaotic signal uses the lower sideband. The digital signal is modulated by OOK, and the modulated chaotic signal is transmitted according to the state of the digital signal. On the receiver side, a low pass filter is used to remove the noise and a decoder is used to recover the original signal. This study uses MATLAB Simulink for simulation. According to the simulation results, this modulation method can improve the transmission security and reduce the distortion caused by noise. Jia-Yin Wang 王佳盈 2019 學位論文 ; thesis 40 en_US
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language en_US
format Others
sources NDLTD
description 碩士 === 中原大學 === 電機工程研究所 === 107 === Abstract This study proposes a modulation method that uses two chaotic signals combined with single sideband full-carrier (SSBFC) and on-off keying (OOK). This method can be applied to transmit digital signals in the noisy channel. The chaotic signals used are the Van der Pol oscillator and the Lorenz attractor. They are all modulated using SSBFC, where the Van der Pol chaotic signal uses the upper sideband and the Lorenz chaotic signal uses the lower sideband. The digital signal is modulated by OOK, and the modulated chaotic signal is transmitted according to the state of the digital signal. On the receiver side, a low pass filter is used to remove the noise and a decoder is used to recover the original signal. This study uses MATLAB Simulink for simulation. According to the simulation results, this modulation method can improve the transmission security and reduce the distortion caused by noise.
author2 Jia-Yin Wang
author_facet Jia-Yin Wang
Kerry C. Hiponia
柯伯瑞
author Kerry C. Hiponia
柯伯瑞
spellingShingle Kerry C. Hiponia
柯伯瑞
IoT Using Chaotic Signals
author_sort Kerry C. Hiponia
title IoT Using Chaotic Signals
title_short IoT Using Chaotic Signals
title_full IoT Using Chaotic Signals
title_fullStr IoT Using Chaotic Signals
title_full_unstemmed IoT Using Chaotic Signals
title_sort iot using chaotic signals
publishDate 2019
url http://ndltd.ncl.edu.tw/handle/692c75
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AT kēbóruì shǐyònghùndùnxìnhàodewùliánwǎng
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