Title :
Design of matching impedance for ultra wideband partial discharge detection
Author :
Emeraldi, Primas ; Khayam, Umar
Author_Institution :
Sch. of Electr. Eng. & Inf., Bandung Inst. of Technol., Bandung, Indonesia
Abstract :
Partial Discharge (PD) detection in the ultra wideband (UWB) at frequency from 100 kHz up to and above 1 GHz give some benefits especially for nature observation of PD pulse shape and frequency spectrum. One of the methods to measure the UWB PD signal is a method of impedance matched. Impedance of 50 ohm corresponding to the characteristic impedance of the coaxial cable and the internal impedance of oscilloscope is used as a coupling device to maximize the power transfer of PD current so that it can obtain real PD signals. This paper designs a matching impedance which composed from attenuator as detecting impedance and UWB amplifier as signal amplifier and evaluates the performance using S-parameter value. The matching impedance has good reflection loss below ~10 dB over low frequencies up to 3 GHz frequency bandwidth, with a minimum value of S11 is ~28.8 dB at a frequency of 322 MHz and ~18.3 dB at 3 GHz. The input impedance and output impedance values are close to 50 ohm over the frequency bandwidth. The gain (S21) of the impedance matching circuit is 14 dB at a frequency close to DC and down to a 6 dB at a frequency of 100 MHz and have flat value of 6 dB up to 3 GHz frequency. From the simulation results, the designed matching impedance has frequency bandwidth from DC up to 3 GHz that can be implemented as a coupling device for UWB PD detection.
Keywords :
amplifiers; coaxial cables; oscilloscopes; partial discharge measurement; ultra wideband technology; PD pulse shape; UWB PD detection; UWB PD signal; UWB amplifier; bandwidth 3 GHz; coaxial cable; coupling device; frequency 100 MHz; frequency 322 MHz; frequency spectrum; impedance matching circuit; internal impedance; matching impedance; oscilloscope; resistance 50 ohm; ultrawideband partial discharge detection; coupling device; matching impedance; partial discharge; ultra wideband;
Conference_Titel :
Information Technology and Electrical Engineering (ICITEE), 2013 International Conference on
Conference_Location :
Yogyakarta
Print_ISBN :
978-1-4799-0423-5
DOI :
10.1109/ICITEED.2013.6676266