Circuit design for multiple-order system with fractional power using singularity function approach / Nor Hasalina Abu Bakar
A fractional slope on the log-log bode plot has been observed in characterizing a certain type of physical phenomena and has been called the fractal system or the fractional power pole. This thesis present the analysis and synthesis of multiple fractal system with fractal dimension 0 < m, < 1....
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1995
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my-uitm-ir.986762024-11-28T08:18:54Z Circuit design for multiple-order system with fractional power using singularity function approach / Nor Hasalina Abu Bakar 1995 Abu Bakar, Nor Hasalina Geometry. Trigonometry. Topology Electric apparatus and materials. Electric circuits. Electric networks A fractional slope on the log-log bode plot has been observed in characterizing a certain type of physical phenomena and has been called the fractal system or the fractional power pole. This thesis present the analysis and synthesis of multiple fractal system with fractal dimension 0 < m, < 1. Multiple fractal system consists of numbers of fractional power pole. A singularity function method is used to approximate the fractional-order function. This method represents the structure of pole-zero pairs on the real axis. The function is then synthesized to circuit form and simulated using PSPICK for its frequency and unit-step responses. The simulation results are presented and compared with the responses from the approximated function that were plotted using MATHCAD. 1995 Thesis https://ir.uitm.edu.my/id/eprint/98676/ https://ir.uitm.edu.my/id/eprint/98676/1/98676.pdf text en public advanced_diploma Universiti Teknologi MARA (UiTM) Faculty of Electrical Engineering Adnan, Ramli |
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Universiti Teknologi MARA |
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UiTM Institutional Repository |
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English |
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Adnan, Ramli |
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Geometry Trigonometry Topology Geometry Trigonometry Topology |
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Geometry Trigonometry Topology Geometry Trigonometry Topology Abu Bakar, Nor Hasalina Circuit design for multiple-order system with fractional power using singularity function approach / Nor Hasalina Abu Bakar |
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A fractional slope on the log-log bode plot has been observed in characterizing a certain type of physical phenomena and has been called the fractal system or the fractional power pole. This thesis present the analysis and synthesis of multiple fractal system with fractal dimension 0 < m, < 1. Multiple fractal system consists of numbers of fractional power pole. A singularity function method is used to approximate the fractional-order function. This method represents the structure of pole-zero pairs on the real axis. The function is then synthesized to circuit form and simulated using PSPICK for its frequency and unit-step responses. The simulation results are presented and compared with the responses from the approximated function that were plotted using MATHCAD. |
format |
Thesis |
qualification_level |
advanced_diploma |
author |
Abu Bakar, Nor Hasalina |
author_facet |
Abu Bakar, Nor Hasalina |
author_sort |
Abu Bakar, Nor Hasalina |
title |
Circuit design for multiple-order system with fractional power using singularity function approach / Nor Hasalina Abu Bakar |
title_short |
Circuit design for multiple-order system with fractional power using singularity function approach / Nor Hasalina Abu Bakar |
title_full |
Circuit design for multiple-order system with fractional power using singularity function approach / Nor Hasalina Abu Bakar |
title_fullStr |
Circuit design for multiple-order system with fractional power using singularity function approach / Nor Hasalina Abu Bakar |
title_full_unstemmed |
Circuit design for multiple-order system with fractional power using singularity function approach / Nor Hasalina Abu Bakar |
title_sort |
circuit design for multiple-order system with fractional power using singularity function approach / nor hasalina abu bakar |
granting_institution |
Universiti Teknologi MARA (UiTM) |
granting_department |
Faculty of Electrical Engineering |
publishDate |
1995 |
url |
https://ir.uitm.edu.my/id/eprint/98676/1/98676.pdf |
_version_ |
1818587983594389504 |