Optimal Design of Integrated Heat Pipe Air-Cooled System Using TLBO Algorithm for SiC MOSFET Converters

Optimal thermal management system design is critical for power electronic converters to ensure the reliability of power semiconductor switches. Medium power density inverter systems are often air-cooled to ensure an efficient and cost-effective thermal management solution. In addition, using heat pi...

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Main Authors: Maryam Alizadeh, Romina Rodriguez, Jennifer Bauman, Ali Emadi
Format: Article
Language:English
Published: IEEE 2020-01-01
Series:IEEE Open Journal of Power Electronics
Subjects:
Online Access:https://ieeexplore.ieee.org/document/9072107/
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spelling doaj-f9fe90d8c69e462787e774839fcb6ccb2021-03-29T18:59:21ZengIEEEIEEE Open Journal of Power Electronics2644-13142020-01-01110311210.1109/OJPEL.2020.29857009072107Optimal Design of Integrated Heat Pipe Air-Cooled System Using TLBO Algorithm for SiC MOSFET ConvertersMaryam Alizadeh0https://orcid.org/0000-0001-9115-8716Romina Rodriguez1https://orcid.org/0000-0003-2315-3440Jennifer Bauman2https://orcid.org/0000-0002-9923-4194Ali Emadi3https://orcid.org/0000-0002-0676-1455McMaster Automotive Resource Centre (MARC), McMaster University, Hamilton, ON, CanadaMcMaster Automotive Resource Centre (MARC), McMaster University, Hamilton, ON, CanadaElectrical and Computer Engineering, McMaster University, Hamilton, ON, CanadaMcMaster Automotive Resource Centre (MARC), McMaster University, Hamilton, ON, CanadaOptimal thermal management system design is critical for power electronic converters to ensure the reliability of power semiconductor switches. Medium power density inverter systems are often air-cooled to ensure an efficient and cost-effective thermal management solution. In addition, using heat pipes as the heat transfer medium between the heat sources and the heat sink can provide lower volume for the entire inverter. This paper investigates the effectiveness of Teaching Learning Based Optimization (TLBO) for finding the optimal forced-air heat sink with heat pipe cooling system to achieve higher fan efficiency and lower inverter packaging volume. The optimal design is found utilizing commercially available fans and heat pipes. The TLBO design optimization is also compared to the highly implemented Particle Swarm Optimization (PSO) and it is found that TLBO uses 20 times fewer iterations than PSO to converge, and that the TLBO results are more robust for different design constraints.https://ieeexplore.ieee.org/document/9072107/Heat pipeheat sinkinvertersjunction temperaturepower lossParticle Swarm Optimization (PSO)
collection DOAJ
language English
format Article
sources DOAJ
author Maryam Alizadeh
Romina Rodriguez
Jennifer Bauman
Ali Emadi
spellingShingle Maryam Alizadeh
Romina Rodriguez
Jennifer Bauman
Ali Emadi
Optimal Design of Integrated Heat Pipe Air-Cooled System Using TLBO Algorithm for SiC MOSFET Converters
IEEE Open Journal of Power Electronics
Heat pipe
heat sink
inverters
junction temperature
power loss
Particle Swarm Optimization (PSO)
author_facet Maryam Alizadeh
Romina Rodriguez
Jennifer Bauman
Ali Emadi
author_sort Maryam Alizadeh
title Optimal Design of Integrated Heat Pipe Air-Cooled System Using TLBO Algorithm for SiC MOSFET Converters
title_short Optimal Design of Integrated Heat Pipe Air-Cooled System Using TLBO Algorithm for SiC MOSFET Converters
title_full Optimal Design of Integrated Heat Pipe Air-Cooled System Using TLBO Algorithm for SiC MOSFET Converters
title_fullStr Optimal Design of Integrated Heat Pipe Air-Cooled System Using TLBO Algorithm for SiC MOSFET Converters
title_full_unstemmed Optimal Design of Integrated Heat Pipe Air-Cooled System Using TLBO Algorithm for SiC MOSFET Converters
title_sort optimal design of integrated heat pipe air-cooled system using tlbo algorithm for sic mosfet converters
publisher IEEE
series IEEE Open Journal of Power Electronics
issn 2644-1314
publishDate 2020-01-01
description Optimal thermal management system design is critical for power electronic converters to ensure the reliability of power semiconductor switches. Medium power density inverter systems are often air-cooled to ensure an efficient and cost-effective thermal management solution. In addition, using heat pipes as the heat transfer medium between the heat sources and the heat sink can provide lower volume for the entire inverter. This paper investigates the effectiveness of Teaching Learning Based Optimization (TLBO) for finding the optimal forced-air heat sink with heat pipe cooling system to achieve higher fan efficiency and lower inverter packaging volume. The optimal design is found utilizing commercially available fans and heat pipes. The TLBO design optimization is also compared to the highly implemented Particle Swarm Optimization (PSO) and it is found that TLBO uses 20 times fewer iterations than PSO to converge, and that the TLBO results are more robust for different design constraints.
topic Heat pipe
heat sink
inverters
junction temperature
power loss
Particle Swarm Optimization (PSO)
url https://ieeexplore.ieee.org/document/9072107/
work_keys_str_mv AT maryamalizadeh optimaldesignofintegratedheatpipeaircooledsystemusingtlboalgorithmforsicmosfetconverters
AT rominarodriguez optimaldesignofintegratedheatpipeaircooledsystemusingtlboalgorithmforsicmosfetconverters
AT jenniferbauman optimaldesignofintegratedheatpipeaircooledsystemusingtlboalgorithmforsicmosfetconverters
AT aliemadi optimaldesignofintegratedheatpipeaircooledsystemusingtlboalgorithmforsicmosfetconverters
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