A simple and effective method to estimate the model parameters of dielectric barrier discharge ozone chamber
This paper presents a simple yet effective method to determine the electrical model parameters of the dielectric barrier discharge (DBD) ozone chamber at frequencies above 20 kHz. The method is an alternative to the conventional Lissajous plot estimation method which appears to yield unsatisfactory...
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my.utm.465322017-09-12T07:50:46Z http://eprints.utm.my/id/eprint/46532/ A simple and effective method to estimate the model parameters of dielectric barrier discharge ozone chamber Amjad, Muhammad Salam, Zainal Facta, Mochammad Ishaque, Kashif TK Electrical engineering. Electronics Nuclear engineering This paper presents a simple yet effective method to determine the electrical model parameters of the dielectric barrier discharge (DBD) ozone chamber at frequencies above 20 kHz. The method is an alternative to the conventional Lissajous plot estimation method which appears to yield unsatisfactory results in this frequency range. Furthermore, the proposed technique allows for the chamber parameters to be determined at different frequencies-a flexibility which is not easily achievable using the typical Lissajous method. The measurement setup consists of a full-bridge inverter and a high-frequency variable inductor connected to the DBD chamber. The inductor can be adjusted to allow for parameter determination at different frequencies. The chamber parameters obtained from experimental results are validated by applying them in a high-voltage power supply for ozone generator. 2012 Article PeerReviewed Amjad, Muhammad and Salam, Zainal and Facta, Mochammad and Ishaque, Kashif (2012) A simple and effective method to estimate the model parameters of dielectric barrier discharge ozone chamber. IEEE Transactions on Instrumentation and Measurement, 61 (6). pp. 1676-1683. ISSN 0018-9456 http://dx.doi.org/10.1109/TIM.2012.2188351 |
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TK Electrical engineering. Electronics Nuclear engineering Amjad, Muhammad Salam, Zainal Facta, Mochammad Ishaque, Kashif A simple and effective method to estimate the model parameters of dielectric barrier discharge ozone chamber |
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This paper presents a simple yet effective method to determine the electrical model parameters of the dielectric barrier discharge (DBD) ozone chamber at frequencies above 20 kHz. The method is an alternative to the conventional Lissajous plot estimation method which appears to yield unsatisfactory results in this frequency range. Furthermore, the proposed technique allows for the chamber parameters to be determined at different frequencies-a flexibility which is not easily achievable using the typical Lissajous method. The measurement setup consists of a full-bridge inverter and a high-frequency variable inductor connected to the DBD chamber. The inductor can be adjusted to allow for parameter determination at different frequencies. The chamber parameters obtained from experimental results are validated by applying them in a high-voltage power supply for ozone generator. |
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Article |
author |
Amjad, Muhammad Salam, Zainal Facta, Mochammad Ishaque, Kashif |
author_facet |
Amjad, Muhammad Salam, Zainal Facta, Mochammad Ishaque, Kashif |
author_sort |
Amjad, Muhammad |
title |
A simple and effective method to estimate the model parameters of dielectric barrier discharge ozone chamber |
title_short |
A simple and effective method to estimate the model parameters of dielectric barrier discharge ozone chamber |
title_full |
A simple and effective method to estimate the model parameters of dielectric barrier discharge ozone chamber |
title_fullStr |
A simple and effective method to estimate the model parameters of dielectric barrier discharge ozone chamber |
title_full_unstemmed |
A simple and effective method to estimate the model parameters of dielectric barrier discharge ozone chamber |
title_sort |
simple and effective method to estimate the model parameters of dielectric barrier discharge ozone chamber |
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2012 |
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http://eprints.utm.my/id/eprint/46532/ http://dx.doi.org/10.1109/TIM.2012.2188351 |
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