Design of Archimedes Spiral Antenna to Optimize for Partial Discharge Detection of Inverter Fed Motor Insulation

The partial discharge (PD) in inverter-fed motors generated from high frequency and short rise time impulsive voltage are more complex than traditional sinusoidal voltage operated motors due to the noise initiated from fast switching power electronics devices. Available PD sensors and related techno...

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Main Authors: Peng Wang, Shijin Ma, Shakeel Akram, Kai Zhou, Yidong Chen, Muhammad Tariq Nazir
Format: Article
Language:English
Published: IEEE 2020-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/9237925/
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spelling doaj-2620bf4df4ee4938a9eecee68fb5cb9f2021-03-30T04:08:04ZengIEEEIEEE Access2169-35362020-01-01819320219321310.1109/ACCESS.2020.30333009237925Design of Archimedes Spiral Antenna to Optimize for Partial Discharge Detection of Inverter Fed Motor InsulationPeng Wang0Shijin Ma1Shakeel Akram2https://orcid.org/0000-0002-7538-8439Kai Zhou3https://orcid.org/0000-0002-8109-6408Yidong Chen4Muhammad Tariq Nazir5College of Electrical Engineering, Sichuan University, Chengdu, ChinaCollege of Electrical Engineering, Sichuan University, Chengdu, ChinaCollege of Electrical Engineering, Sichuan University, Chengdu, ChinaCollege of Electrical Engineering, Sichuan University, Chengdu, ChinaCollege of Electrical Engineering, Sichuan University, Chengdu, ChinaSchool of Mechanical and Manufacturing Engineering, University of New South Wales, Sydney, NSW, AustraliaThe partial discharge (PD) in inverter-fed motors generated from high frequency and short rise time impulsive voltage are more complex than traditional sinusoidal voltage operated motors due to the noise initiated from fast switching power electronics devices. Available PD sensors and related technology for DC and sinusoidal voltage cannot be used at repetitive impulsive voltage conditions. This work aims to report the design of antenna with optimized geometry and satisfied parameters to detect PD for impulsive voltage. The antenna is verified and the influence of both impulse voltage parameters and test configuration on PD features are discussed. The envelope detection technique after the filter in the frequency domain was proposed to reduce the complexity and cost of PD test hardware under impulsive voltages with fast rise times. The frequency domain energy of PD from motor insulation is mainly distributed in the range of 0.6-1.8 GHz. By increasing the amplitude and frequency of input impulsive voltage, the range of PD energy spectrum is enlarged to (1.5-1.8 GHz) and by decreasing input amplitude the PD signal strength decays abruptly. Moreover, the high-frequency distribution of PD energy attenuates more severely with the distance and the electromagnetic energy of PD decays nonlinearly with the increase of propagation distance. Therefore, under the premise of satisfying the safety test, selecting the test distance below 15 cm can ensure that the test results have a high signal-to-noise ratio and signal integrity. The experience reported in this study could provide suggestions for off-line PD measurements for inverter-fed motor insulation evaluations for manufacturers.https://ieeexplore.ieee.org/document/9237925/InvertersmotorsUHF antennaspartial dischargesimpulse voltage
collection DOAJ
language English
format Article
sources DOAJ
author Peng Wang
Shijin Ma
Shakeel Akram
Kai Zhou
Yidong Chen
Muhammad Tariq Nazir
spellingShingle Peng Wang
Shijin Ma
Shakeel Akram
Kai Zhou
Yidong Chen
Muhammad Tariq Nazir
Design of Archimedes Spiral Antenna to Optimize for Partial Discharge Detection of Inverter Fed Motor Insulation
IEEE Access
Inverters
motors
UHF antennas
partial discharges
impulse voltage
author_facet Peng Wang
Shijin Ma
Shakeel Akram
Kai Zhou
Yidong Chen
Muhammad Tariq Nazir
author_sort Peng Wang
title Design of Archimedes Spiral Antenna to Optimize for Partial Discharge Detection of Inverter Fed Motor Insulation
title_short Design of Archimedes Spiral Antenna to Optimize for Partial Discharge Detection of Inverter Fed Motor Insulation
title_full Design of Archimedes Spiral Antenna to Optimize for Partial Discharge Detection of Inverter Fed Motor Insulation
title_fullStr Design of Archimedes Spiral Antenna to Optimize for Partial Discharge Detection of Inverter Fed Motor Insulation
title_full_unstemmed Design of Archimedes Spiral Antenna to Optimize for Partial Discharge Detection of Inverter Fed Motor Insulation
title_sort design of archimedes spiral antenna to optimize for partial discharge detection of inverter fed motor insulation
publisher IEEE
series IEEE Access
issn 2169-3536
publishDate 2020-01-01
description The partial discharge (PD) in inverter-fed motors generated from high frequency and short rise time impulsive voltage are more complex than traditional sinusoidal voltage operated motors due to the noise initiated from fast switching power electronics devices. Available PD sensors and related technology for DC and sinusoidal voltage cannot be used at repetitive impulsive voltage conditions. This work aims to report the design of antenna with optimized geometry and satisfied parameters to detect PD for impulsive voltage. The antenna is verified and the influence of both impulse voltage parameters and test configuration on PD features are discussed. The envelope detection technique after the filter in the frequency domain was proposed to reduce the complexity and cost of PD test hardware under impulsive voltages with fast rise times. The frequency domain energy of PD from motor insulation is mainly distributed in the range of 0.6-1.8 GHz. By increasing the amplitude and frequency of input impulsive voltage, the range of PD energy spectrum is enlarged to (1.5-1.8 GHz) and by decreasing input amplitude the PD signal strength decays abruptly. Moreover, the high-frequency distribution of PD energy attenuates more severely with the distance and the electromagnetic energy of PD decays nonlinearly with the increase of propagation distance. Therefore, under the premise of satisfying the safety test, selecting the test distance below 15 cm can ensure that the test results have a high signal-to-noise ratio and signal integrity. The experience reported in this study could provide suggestions for off-line PD measurements for inverter-fed motor insulation evaluations for manufacturers.
topic Inverters
motors
UHF antennas
partial discharges
impulse voltage
url https://ieeexplore.ieee.org/document/9237925/
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