ࡱ> cfb R%bjbjjj4\gcgc      8WD%/7(___w.......$=136. .  _w4.   B _ w. .  r)T*_ r@@*..0%/N*)4-)4**)4 - .. %/)4  : UISEONG KIM  HYPERLINK "uisung@gmail.com" uisung@gmail.com EDUCATION Feb. 2005 B.S. in Chemical Engineering, Chung-Ang University, Seoul, Korea Feb. 2007 M.S. in Chemical Engineering, 鶹Ӱ, Suwon, Korea Feb. 2013 Ph. D. in Chemical Engineering, 鶹Ӱ, Suwon, Korea WORKING EXPERIENCES 2013 - 2013 Postdoctoral researcher in 鶹Ӱ -electrochemical engineering for battery systems 2013 - 2016 BMS engineer/System engineer Project manager in Automotive BMS team at LG Chem Development for battery management systems of 48V Audi: 2013~2014 Renault: 2013 Nissan: 2013 SAIC :2013 BMW: 2015~2016 Development for battery management systems of 12V BMW 2014~2016 Project leader 2016~ Development for battery management systems of LEV Yamaha :2014~2015 PROJECTS in Graduate School Modeling of Electrochemical Systems (Battery) 1. Modeling of Li-ion battery Thermal model (Test/Simulation) 2008-2010 Development of Heat Source Model for Li-Ion Battery with GM, USA 2010-2012 Effect of Dynamic Cycling and Aging on the Nonuniform Heat Source of Li-Ion Battery with GM, USA 2010-2012 Effect of driving cycles and aging on the thermal behavior of lithium-ion batteries for electric vehicle applications with National Research Foundation of Korea Thermal behavior Optimal design model (Simulation) 2009-2010 Modeling for the optimization of battery configuration with Samsung Electronics, Korea 2005 Modeling of the potential, current density, and temperature distribution on the electrodes of a lithium-polymer battery with VK Corporation, Korea Cycle life model (Test/Simulation) 2007-2008 Development of a model to predict the cycle life of a secondary lithium-polymer battery with Hyundai Motor Company, Korea 2009-2012 Development of the electrochemical model to predict the life of a rechargeable lithium battery for V2G application with SKI, Korea 2010-2012 Development of the electrochemical model of a LIB for 10kW energy storage system with KIST, Korea Battery pack model (Simulation) 2009 A study on the thermal behavior of a battery system and the efficiency of cooling system with EIG Corporation, Korea 2010 A study on the thermal behavior for high power hybrid battery system with EIG Corporation, Korea 2. Model of Lead-acid battery (Test/Simulation) 2005 Modeling of the dynamic behavior of a 12V automotive lead acid battery with Hyundai Motor Company, Korea 2006 Modeling of the dynamic behavior of a 12V automotive lead acid battery with Hyundai Motor Company, Korea 2007 A study on the effect of the charge-discharge system on the cycle life of an automotive battery with Hyundai Motor Company, Korea 2008 A study on the effect of the charge-discharge system on the cycle life of an automotive battery with Hyundai Motor Company, Korea 2009 Modeling of a VRLA battery for the battery management system of a green car with National Research Foundation of Korea 2010 Modeling of a VRLA battery for the battery management system of a green car with National Research Foundation of Korea 2010 Development of an electrochemical model of an AGM battery with Hyundai Motor Company, Korea 2011 Modeling of a VRLA battery for the battery management system of a green car with National Research Foundation of Korea 2011 Development of 2S2P AGM battery model with Sebang Company, Korea 2012 Development of 12V Battery Life (Aging) Simulation for Hybrid/BEV with GMK, Korea 3. Model of Ultracapacior (Test/Simulation) 2013 Electric/Thermal Model for Ultracapacitor with LS Mtron, Korea Papers on International Journals 1. Dae Hun Lee, Ui Seong Kim, Chee Burm Shin, Baek Haeng Lee, Byung Woo Kim and Young-Ho Kim, "Modeling of the thermal behavior of an ultracapacitor for a 42-V automotive electrical system," J. Power Sources, Elsevier, 175(1), pp.664-668, 2008.01. 2. Ui Seong Kim, Chee Burm Shin and Chi-Su Kim , "Effect of electrode configuration on the thermal behavior of a lithium-polymer battery," J. Power Sources, Elsevier, 180(2),pp.909-916, 2008.06. 3. Ui Seong Kim, Chee Burm Shin and Chi-Su Kim, "Modeling for the scale-up of a lithium-ion polymer battery," J. Power Sources, Elsevier, 189(1),pp.841-846, 2009.04. 4. Sehoon Jeon, Ui Seong Kim, Wonjin Jeon, Chee Burm Shin, Surin Hong, Inhee Choi, Suseung Lee, and Jongheop Yi, "Fabrication of Multicomponent Protein Microarrays with Microfluidic Devices Poly(dimethylsiloxane)," Macromolecular Research, Vol. 17(3), pp 192-196, 2009.04. 5. Ui Seong Kim, Chee Burm Shin, Seung Myun Chung, Sung Tae Kim and Byung Won Cho, "Modeling of the capacity loss of a 12 V automotive lead-acid battery due to ageing and comparison with measurement data," J. Power Sources, Elsevier, 190(1),pp.184-188, 2009.05. 6. Ui Seong Kim, Jaeshin Yi, Chee Burm Shin, Taeyoung Han and Seongyong Park, "Modeling the Dependence of the Discharge Behavior of a Lithium-Ion Battery on the Environmental Temperature," Journal of The Electrochemical Society, 158 (5) A611-A618 (2011) 7. Ui Seong Kim, Jaeshin Yi, Chee Burm Shin, Taeyoung Han and Seongyong Park, "Modelling the thermal behaviour of a lithium-ion battery during charge," Journal of Power Sources, Elsevier 196 (2011) 51155121 8. Jaeshin Yi, Ui Seong Kim, Chee Burm Shin, Taeyoung Han and Seongyong Park, "Three-Dimensional Thermal Modeling of a Lithium-Ion Battery Considering the Combined Effects of the Electrical and Thermal Contact Resistances between Current Collecting Tab and LeadWire," Journal of The Electrochemical Society, 160 (3) A437-A443 (2013) 9. Jaeshin Yi, Ui Seong Kim, Chee Burm Shin, Taeyoung Han and Seongyong Park, " Modeling the temperature dependence of the discharge behavior of a lithium-ion battery in low environmental temperature,", Journal of Power Sources 244, 143-148 10. US Kim, J Yi, CB Shin, T Han, S Park, " Modeling the Thermal Behaviors of a Lithium-Ion Battery during Constant-Power Discharge and Charge Operations,", Journal of The Electrochemical Society 160 (6), A990-A995 Papers on Domestic Journals 1. Ui Seong Kim, Sehoon Jeon, Wonjin Jeon, Chee Burm Shin, Seung Myun Chung and Sung Tae Kim, Modeling of the Charge-discharge Behavior of a 12-V Automotive Lead-acid Battery, Korean Chem. Eng. Res., Vol. 45(3), pp. 242-248, 2007.06 2. Ui Seong Kim, Jungbin Lee, Jaeshin Yi, Chee Burm Shin, Je Hun Choi and Seokbeom Lee, Modeling of the cycle life of a lithium-ion polymer battery, Korean Chem. Eng. Res., Vol. 47(3), pp. 344-348, 2009.06 3. J Lee, US Kim, JS Yi, CB Shin, Modeling of the charge and discharge behavior of the 2S2P (2 series-2 parallel) AGM battery system for commercial vehicles, Journal of Energy Engineering 21 (4), 346-355 4. ST Kim, J Lee, US Kim, CB Shin Modeling of the lifetime prediction of a 12-V automotive lead-acid battery, Journal of Energy Engineering 22 (4), 338-346 5. ST Kim, J Lee, US Kim, CB Shin  HYPERLINK "http://scholar.google.co.kr/citations?view_op=view_citation&hl=ko&user=1LZ_iKgAAAAJ&sortby=pubdate&authuser=1&citation_for_view=1LZ_iKgAAAAJ:LjlpjdlvIbIC" Modeling of the dynamic behavior of a 12-V automotive lead-acid battery, Journal of Energy Engineering 22 (2), 175-183 Papers on SAE 1. Sung Tae Kim, Seung Myun Chung, Wanjaae Shin, Chee Burm Shin, Ui seong kim and Dae Hun Lee, Electrical System Modeling Based on Lead Acid Battery Aging, SAE 2009 World congress. 2009-01-1038, 2009.04 2. Taeyoung Han, Seongyong Park, Ui Seong Kim and Chee Burm Shin, Nonuniform Heat Source Model for a Lithium-Ion Battery at Various Operating Conditions, SAE 2011 World congress. 2011-01-0654, 2011.04        +,-=>?@JKOPSTUVXY^rtͽ͓͉vk^P^kP^PkP^PkPCh7h CJOJaJh7h,b CJOJaJo(h7h,b CJOJaJh,b CJOJaJo(h,b CJOJQJh,b CJKHo(h"+$h"+$KHo(#h"+$h"+$0J5CJKHOJQJ.jh"+$h"+$5CJKHOJQJUh"+$h"+$5CJKHOJQJ(jh"+$h"+$5CJKHOJQJUh,b 5CJ$KHOJQJh"+$h,b 5CJ$KHOJQJ ?@JK, - . 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