In Improvement of the Ziegler-Nichols control Scheme by using Fuzzy CPI Techniques
碩士 === 國立雲林科技大學 === 電機工程技術研究所 === 86 === Based on the Sliding-Mode control theory, a Takagi-Sugeno type fuzzy controller caalled fuzzy CPI controller is proposed, in this thesis, to improve the performance of Ziegler-Nichols PID controllers. The key feature of the proposed control scheme...
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ndltd-TW-086YUNTE4410052015-10-13T17:34:50Z http://ndltd.ncl.edu.tw/handle/84858086324232979136 In Improvement of the Ziegler-Nichols control Scheme by using Fuzzy CPI Techniques 以FuzzyCPI改善Ziegler-Nichols控制器的效益 YEH Ping-huang 葉炳煌 碩士 國立雲林科技大學 電機工程技術研究所 86 Based on the Sliding-Mode control theory, a Takagi-Sugeno type fuzzy controller caalled fuzzy CPI controller is proposed, in this thesis, to improve the performance of Ziegler-Nichols PID controllers. The key feature of the proposed control scheme is that the structure of the commonly used Ziegler-Nichols PID controller is not changed, instead, a novel fuzzy CPI controller is connected in parallel with it. With a fixed rule base, the parameters of the fuzzy CPI compensator are tuned, respectively, for different typical plants, to achieve a more efficient control than conventional Z-N PID controller. The simulation results shows that the maximum overshoot, settlinng time and the oscillation behavior etc, are significantly reduced. Moreover, the sensitivity of the controlled system to the variation of the plant parameters seems to be much less than the conventional Z-N PID controllers. In a comparison with some well-known refinements of the Z-N formula, the proposed control scheme in this thesis has proved to be successful and promising for used in the industrial applications. JUHNG-PERNG SU 蘇仲鵬 1998 學位論文 ; thesis 55 zh-TW |
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碩士 === 國立雲林科技大學 === 電機工程技術研究所 === 86 === Based on the Sliding-Mode control theory, a Takagi-Sugeno type fuzzy controller caalled fuzzy CPI controller is proposed, in this thesis, to improve the performance of Ziegler-Nichols PID controllers. The key feature of the proposed control scheme is that the structure of the commonly used Ziegler-Nichols PID controller is not changed, instead, a novel fuzzy CPI controller is connected in parallel with it. With a fixed rule base, the parameters of the fuzzy CPI compensator are tuned, respectively, for different typical plants, to achieve a more efficient control than conventional Z-N PID controller. The simulation results shows that the maximum overshoot, settlinng time and the oscillation behavior etc, are significantly reduced. Moreover, the sensitivity of the controlled system to the variation of the plant parameters seems to be much less than the conventional Z-N PID controllers. In a comparison with some well-known refinements of the Z-N formula, the proposed control scheme in this thesis has proved to be successful and promising for used in the industrial applications.
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author2 |
JUHNG-PERNG SU |
author_facet |
JUHNG-PERNG SU YEH Ping-huang 葉炳煌 |
author |
YEH Ping-huang 葉炳煌 |
spellingShingle |
YEH Ping-huang 葉炳煌 In Improvement of the Ziegler-Nichols control Scheme by using Fuzzy CPI Techniques |
author_sort |
YEH Ping-huang |
title |
In Improvement of the Ziegler-Nichols control Scheme by using Fuzzy CPI Techniques |
title_short |
In Improvement of the Ziegler-Nichols control Scheme by using Fuzzy CPI Techniques |
title_full |
In Improvement of the Ziegler-Nichols control Scheme by using Fuzzy CPI Techniques |
title_fullStr |
In Improvement of the Ziegler-Nichols control Scheme by using Fuzzy CPI Techniques |
title_full_unstemmed |
In Improvement of the Ziegler-Nichols control Scheme by using Fuzzy CPI Techniques |
title_sort |
in improvement of the ziegler-nichols control scheme by using fuzzy cpi techniques |
publishDate |
1998 |
url |
http://ndltd.ncl.edu.tw/handle/84858086324232979136 |
work_keys_str_mv |
AT yehpinghuang inimprovementofthezieglernicholscontrolschemebyusingfuzzycpitechniques AT yèbǐnghuáng inimprovementofthezieglernicholscontrolschemebyusingfuzzycpitechniques AT yehpinghuang yǐfuzzycpigǎishànzieglernicholskòngzhìqìdexiàoyì AT yèbǐnghuáng yǐfuzzycpigǎishànzieglernicholskòngzhìqìdexiàoyì |
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