Lab for Battery Applicaiton Technology

배터리 응용 기술 연구 랩

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배터리 응용 기술 연구 랩

This lab deals with battery application technology research on the establishment of valuation criteria for safe management of batteries and economical reuse/recycle of used battery.
Specifically, we are focusing on research for lithium-ion battery diagnosis and prognosis, research for application to battery pack systems.
From the field of battery diagnosis and prognosis research, we are studying the technology to identify the battery internal state based on the understanding of the degradation mechanisms and diagnose the battery using quantified health indicator (HI) that can represent the internal state, and the technology for safe battery management as well as economical allocation of reuse/recycle resources at the right time through remaining useful life (RUL) prediction.
In addition, the battery system application research area deals with the analysis of the heterogeneous distribution in the extended battery pack and the techniques for real-time, online analysis of onboard battery in ESS or EV.
Finally, we aim to develop a comprehensive battery operation & management platform which can play an important role in the Battery as a Service (BAAS) business.

Major research field

Research on Diagnosis and Prognosis of LIB, Application of Battery System

Desired field of research

Operational management technology and platform development that can be applied to the battery-based service business.

Research Keywords and Topics

Battery Diagnosis and Prognosis, Battery operational management, Safe and economical utilization of battery, Battery systematization, Energy Storage System(ESS) Design

Research Publications
MORE

• ADVANCED SUSTAINABLE SYSTEMS / Design of Large-Scale Rectangular Cells for Rechargeable Seawater Batteries / Kim Y, Harzandi AM, Lee Ji, Choi YS, Kim Y, / 2020-06
• ADVANCED FUNCTIONAL MATERIALS / 3D Ion-Conducting, Scalable, and Mechanically Reinforced Ceramic Film for High Voltage Solid-State Batteries / Kim HW, Han J, Lim YJ, Choi YS, Lee E., Kim Y / 2020-05
• JOURNAL OF MATERIALS CHEMISTRY A / Identifying the mechanism and impact of parasitic reactions occurring in carbonaceous seawater battery cathodes / Lee W, Park J, Park J, Kang SJ, Choi YS, Kim Y / 2020-05

Patents

• 리튬설퍼전지 제조방법 / 최윤석 외 5인 / 2003-11
• 리튬설퍼전지용 양극 도전재 및 이를 포함하는 리튬설퍼전지 / 최윤석 외 5인 / 2003-07

국가과학기술표준분류

  • ED. 전기/전자
  • ED09. 전지
  • ED0903. 응용/활용기술(HEV 등)

국가기술지도분류

  • 환경/에너지 프론티어 진흥
  • 031900. 2차 전지기술

녹색기술분류

  • 고효율화기술
  • 전력효율성 향상
  • 326. 고효율 2차전지기술

6T분류

  • ET 분야
  • 에너지
  • 050217. 에너지저장 이용기술