Memristor Based Circuit Analysis and Applications
碩士 === 逢甲大學 === 電子工程學系 === 101 === Memrisor (short for memory resistor), the fourth fundamental circuit element, is postulated by Leon O. Chua. There are four parts will be introduced in this thesis. The basic characteristic of memristor with variable resistance which changes automatically as its vo...
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ndltd-TW-101FCU054280172015-10-13T22:57:02Z http://ndltd.ncl.edu.tw/handle/03318204419827946461 Memristor Based Circuit Analysis and Applications 基於憶阻器之電路分析與應用 I-shinLiu 劉宜欣 碩士 逢甲大學 電子工程學系 101 Memrisor (short for memory resistor), the fourth fundamental circuit element, is postulated by Leon O. Chua. There are four parts will be introduced in this thesis. The basic characteristic of memristor with variable resistance which changes automatically as its voltage changing is given in the first part. In the second part, transient specifications analysis of second order memristor based circuit is introduced. By replacing bulky resistor with memristor, the proposed series memristor-inductor-capacitor (MLC) circuit description and mathematical analysis are innovated. The simulation results show that both the rise time and the maximum overshoot can be made smaller simultaneously by suitably choosing memristor and voltage polarity. The third part deals with the memristor-based chaotic Chua’s circuit synchronization between different Chua’s circuits by using continuous QR method to compute the Lyapunov exponent of Chua’s circuit. Finally, memristor based Chua’s circuit with time delay feedback is investigated and the Lyapunov exponents are calculated to analyze the chaotic behaviors of time-delay Chua’s circuit for different delay times. 林宗志 2013 學位論文 ; thesis 92 zh-TW |
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碩士 === 逢甲大學 === 電子工程學系 === 101 === Memrisor (short for memory resistor), the fourth fundamental circuit element, is postulated by Leon O. Chua. There are four parts will be introduced in this thesis. The basic characteristic of memristor with variable resistance which changes automatically as its voltage changing is given in the first part. In the second part, transient specifications analysis of second order memristor based circuit is introduced. By replacing bulky resistor with memristor, the proposed series memristor-inductor-capacitor (MLC) circuit description and mathematical analysis are innovated. The simulation results show that both the rise time and the maximum overshoot can be made smaller simultaneously by suitably choosing memristor and voltage polarity. The third part deals with the memristor-based chaotic Chua’s circuit synchronization between different Chua’s circuits by using continuous QR method to compute the Lyapunov exponent of Chua’s circuit. Finally, memristor based Chua’s circuit with time delay feedback is investigated and the Lyapunov exponents are calculated to analyze the chaotic behaviors of time-delay Chua’s circuit for different delay times.
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author2 |
林宗志 |
author_facet |
林宗志 I-shinLiu 劉宜欣 |
author |
I-shinLiu 劉宜欣 |
spellingShingle |
I-shinLiu 劉宜欣 Memristor Based Circuit Analysis and Applications |
author_sort |
I-shinLiu |
title |
Memristor Based Circuit Analysis and Applications |
title_short |
Memristor Based Circuit Analysis and Applications |
title_full |
Memristor Based Circuit Analysis and Applications |
title_fullStr |
Memristor Based Circuit Analysis and Applications |
title_full_unstemmed |
Memristor Based Circuit Analysis and Applications |
title_sort |
memristor based circuit analysis and applications |
publishDate |
2013 |
url |
http://ndltd.ncl.edu.tw/handle/03318204419827946461 |
work_keys_str_mv |
AT ishinliu memristorbasedcircuitanalysisandapplications AT liúyíxīn memristorbasedcircuitanalysisandapplications AT ishinliu jīyúyìzǔqìzhīdiànlùfēnxīyǔyīngyòng AT liúyíxīn jīyúyìzǔqìzhīdiànlùfēnxīyǔyīngyòng |
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1718082321088774144 |