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dc.contributor.advisor Byun, Gangil -
dc.contributor.author Kwon, Jeongbin -
dc.date.accessioned 2026-04-23T17:48:46Z -
dc.date.available 2026-04-23T17:48:46Z -
dc.date.issued 2026-02 -
dc.description.abstract This thesis presents a design methodology for an active electromagnetic interference (EMI) choke aimed at enhancing common-mode (CM) impedance through complex impedance modeling and loop gain stability analysis. The feedback impedance is derived from the measured characteristics of a conventional CM choke and EMI filter, and is optimized to achieve both impedance boosting and system stability over the target frequency range. To implement this function in a compact form, a customized integrated circuit (IC) was developed and embedded within an 18 mm × 20 mm printed circuit board, enabling cost-effective mass production. The proposed design was experimentally validated using an 11kW on-board charger (OBC). Results showed that the active EMI choke increased CM impedance by more than five times around 300 kHz. Conducted emission (CE) measurements demonstrated that a two-stage EMI filter incorporating the active choke achieved comparable or superior suppression performance to a conventional three-stage passive filter while reducing overall weight by approximately 38%. Furthermore, tests with various magnetic core materials revealed that nanocrystalline cores provided the most effective broadband impedance enhancement. -
dc.description.degree Master -
dc.description Master Degree in Information & Communication Technology (ICT) Convergence -
dc.identifier.uri https://scholarworks.unist.ac.kr/handle/201301/91523 -
dc.identifier.uri http://unist.dcollection.net/common/orgView/200000964984 -
dc.language ENG -
dc.publisher Ulsan National Institute of Science and Technology -
dc.rights.embargoReleaseDate 9999-12-31 -
dc.rights.embargoReleaseTerms 9999-12-31 -
dc.subject air compressor, predictive maintenance, condition-based maintenance -
dc.title Design Methods and Characteristics of Active EMI Choke Using a Custumized IC for Real 11kW On-Board Charger -
dc.type Thesis -

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