Lifetime benchmarking of two DC-link passive filtering configurations in adjustable speed drives

© 2018 IEEE. Electrolytic capacitors with a DC-side inductor, and the slim DC-link capacitor are two typical filtering configurations in Adjustable Speed Drives (ASDs). The reliability performance of these capacitive DC-link solutions is an essential aspect to be considered, which depends on both co...

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Main Authors: Wang, H., Davari, P., Kumar, D., Zare, Firuz, Blaabjerg, F.
Format: Conference Paper
Published: 2018
Online Access:http://hdl.handle.net/20.500.11937/68590
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author Wang, H.
Davari, P.
Wang, H.
Kumar, D.
Zare, Firuz
Blaabjerg, F.
author_facet Wang, H.
Davari, P.
Wang, H.
Kumar, D.
Zare, Firuz
Blaabjerg, F.
author_sort Wang, H.
building Curtin Institutional Repository
collection Online Access
description © 2018 IEEE. Electrolytic capacitors with a DC-side inductor, and the slim DC-link capacitor are two typical filtering configurations in Adjustable Speed Drives (ASDs). The reliability performance of these capacitive DC-link solutions is an essential aspect to be considered, which depends on both component inherent capability and the operational conditions (e.g., electro-thermal stresses) in the field operation. This paper studies the reliability performance of the LC filter and slim capacitor based filter in a standard ASD system. Considering the variations of the capacitor parameters, environment stresses, and lifetime model, the lifetime of the two configurations are compared. Moreover, scalability analysis is presented in terms of power rating, amplitude and phase angle unbalance levels at the grid side. The results serve as a guideline for reliability aspect performance benchmarking of different DC-link solutions in ASD applications.
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spelling curtin-20.500.11937-685902018-06-29T12:35:02Z Lifetime benchmarking of two DC-link passive filtering configurations in adjustable speed drives Wang, H. Davari, P. Wang, H. Kumar, D. Zare, Firuz Blaabjerg, F. © 2018 IEEE. Electrolytic capacitors with a DC-side inductor, and the slim DC-link capacitor are two typical filtering configurations in Adjustable Speed Drives (ASDs). The reliability performance of these capacitive DC-link solutions is an essential aspect to be considered, which depends on both component inherent capability and the operational conditions (e.g., electro-thermal stresses) in the field operation. This paper studies the reliability performance of the LC filter and slim capacitor based filter in a standard ASD system. Considering the variations of the capacitor parameters, environment stresses, and lifetime model, the lifetime of the two configurations are compared. Moreover, scalability analysis is presented in terms of power rating, amplitude and phase angle unbalance levels at the grid side. The results serve as a guideline for reliability aspect performance benchmarking of different DC-link solutions in ASD applications. 2018 Conference Paper http://hdl.handle.net/20.500.11937/68590 10.1109/APEC.2018.8341014 restricted
spellingShingle Wang, H.
Davari, P.
Wang, H.
Kumar, D.
Zare, Firuz
Blaabjerg, F.
Lifetime benchmarking of two DC-link passive filtering configurations in adjustable speed drives
title Lifetime benchmarking of two DC-link passive filtering configurations in adjustable speed drives
title_full Lifetime benchmarking of two DC-link passive filtering configurations in adjustable speed drives
title_fullStr Lifetime benchmarking of two DC-link passive filtering configurations in adjustable speed drives
title_full_unstemmed Lifetime benchmarking of two DC-link passive filtering configurations in adjustable speed drives
title_short Lifetime benchmarking of two DC-link passive filtering configurations in adjustable speed drives
title_sort lifetime benchmarking of two dc-link passive filtering configurations in adjustable speed drives
url http://hdl.handle.net/20.500.11937/68590