DocumentCode
3247435
Title
Simulation of TDR circuit for the analysis of wave propagation in XLPE cable model
Author
Rahim, Nor Hidayah ; Sutan Chairul, I. ; Ab Ghani, Sharin ; Ahmad Khiar, Mohd Shahril ; Abas, Norafizah ; Md Thayoob, Yasmin Hanum
Author_Institution
Fac. of Electr. Eng., Univ. Teknikal Malaysia Melaka, Durian Tunggal, Malaysia
fYear
2012
fDate
2-5 Dec. 2012
Firstpage
796
Lastpage
801
Abstract
Wave propagation characteristic of single phase medium voltage MV cross-linked-polyethylene (XLPE) cable is determined by using Time Domain Reflectometry (TDR). It involves sending electrical pulse along a cable by using an oscilloscope to observe the reflected pulses. By using electrical circuit analysis and transmission line theory, the relationship between the actual and the reflected pulses from the test cable to the reflected pulses measured from an oscilloscope can be obtained. In actual field, test cable is usually lossy cable. By using the high frequency XLPE cable model, the distributed parameters which consist of R, resistance per-unit length (Ω/m), L, inductance per-unit length (H/m), C, capacitance per-unit length (F/m) and G, conductance per-unit length (S/m) are represented and applied in the TDR PSpice circuit simulation. Therefore by using simulation of TDR in PSpice circuit, it delivered the wave propagation characteristic which is attenuation. This paper as a reference guides to study how wave propagate in TDR measurement system and from the analysis and results of TDR simulation, the attenuation from XLPE cable model can be obtained.
Keywords
SPICE; XLPE insulation; electric resistance; electromagnetic wave propagation; network analysis; oscilloscopes; power cable insulation; time-domain reflectometry; transmission line theory; TDR PSpice circuit simulation; TDR measurement system; XLPE cable model attenuation; capacitance per-unit length; conductance per-unit length; distributed parameters; electrical circuit analysis; electrical pulse; high frequency XLPE cable model; inductance per-unit length; lossy cable; oscilloscope; reflected pulses; resistance per-unit length; single phase medium voltage MV cross-linked-polyethylene cable; test cable; time domain reflectometry; transmission line theory; wave propagation analysis; Attenuation; Cable insulation; Conductors; Integrated circuit modeling; Power cables; Transmission line measurements; XLPE cable; attenuation; time domain reflectometry; transmission line; wave propagation characteristic;
fLanguage
English
Publisher
ieee
Conference_Titel
Power and Energy (PECon), 2012 IEEE International Conference on
Conference_Location
Kota Kinabalu
Print_ISBN
978-1-4673-5017-4
Type
conf
DOI
10.1109/PECon.2012.6450325
Filename
6450325
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