Adaptive impedance matching network with digital capacitor in narrowband power line communication

Power Line Communication is increasingly getting common in various applications. However, the noise level and impedance mismatch are still the main concern of the technology. Although the noise level and the impedance mismatch of the systems can be controlled using a bandpass filter and an impedance...

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Main Authors: Rui, C.P., Barsoum, N.N., Ming, A.W.K., Wong, Kiing Ing
Other Authors: Fumio Harashima
Format: Conference Paper
Published: IEEE Xplore Digital Library 2013
Subjects:
Online Access:http://hdl.handle.net/20.500.11937/18300
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author Rui, C.P.
Barsoum, N.N.
Ming, A.W.K.
Wong, Kiing Ing
author2 Fumio Harashima
author_facet Fumio Harashima
Rui, C.P.
Barsoum, N.N.
Ming, A.W.K.
Wong, Kiing Ing
author_sort Rui, C.P.
building Curtin Institutional Repository
collection Online Access
description Power Line Communication is increasingly getting common in various applications. However, the noise level and impedance mismatch are still the main concern of the technology. Although the noise level and the impedance mismatch of the systems can be controlled using a bandpass filter and an impedance matching circuit, respectively, the variables in the power line are not static and it is rather difficult to design a circuit that allows maximum power transfer in the system all the time. In this paper, a new adaptive impedance matching circuit is proposed for narrowband power line communication. A new model using a digital capacitor and a digital resistor are derived that based on the Band Pass RLC impedance matching network.
first_indexed 2025-11-14T07:25:10Z
format Conference Paper
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institution Curtin University Malaysia
institution_category Local University
last_indexed 2025-11-14T07:25:10Z
publishDate 2013
publisher IEEE Xplore Digital Library
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spelling curtin-20.500.11937-183002017-09-13T13:46:02Z Adaptive impedance matching network with digital capacitor in narrowband power line communication Rui, C.P. Barsoum, N.N. Ming, A.W.K. Wong, Kiing Ing Fumio Harashima digital capacitor narrowband power line communication bandpass filter impedance matching binary systems Power Line Communication is increasingly getting common in various applications. However, the noise level and impedance mismatch are still the main concern of the technology. Although the noise level and the impedance mismatch of the systems can be controlled using a bandpass filter and an impedance matching circuit, respectively, the variables in the power line are not static and it is rather difficult to design a circuit that allows maximum power transfer in the system all the time. In this paper, a new adaptive impedance matching circuit is proposed for narrowband power line communication. A new model using a digital capacitor and a digital resistor are derived that based on the Band Pass RLC impedance matching network. 2013 Conference Paper http://hdl.handle.net/20.500.11937/18300 10.1109/ISIE.2013.6563591 IEEE Xplore Digital Library restricted
spellingShingle digital capacitor
narrowband power line communication
bandpass filter
impedance matching
binary systems
Rui, C.P.
Barsoum, N.N.
Ming, A.W.K.
Wong, Kiing Ing
Adaptive impedance matching network with digital capacitor in narrowband power line communication
title Adaptive impedance matching network with digital capacitor in narrowband power line communication
title_full Adaptive impedance matching network with digital capacitor in narrowband power line communication
title_fullStr Adaptive impedance matching network with digital capacitor in narrowband power line communication
title_full_unstemmed Adaptive impedance matching network with digital capacitor in narrowband power line communication
title_short Adaptive impedance matching network with digital capacitor in narrowband power line communication
title_sort adaptive impedance matching network with digital capacitor in narrowband power line communication
topic digital capacitor
narrowband power line communication
bandpass filter
impedance matching
binary systems
url http://hdl.handle.net/20.500.11937/18300