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學經歷與研究專長 (吳美玲老師)

arow.gif (1479 bytes)  學歷

  • Ph.D, Department of Mechanical Egineering, University of Maryland at College Park, USA

(美國馬里蘭大學,機械工程學系,博士)

(Center for Advanced Life Cycle Engineering, Calce Center - UMCP)

 

  • Bachelor of Science, Department of Mechanical Egineering, West Virginia University, USA

(美國西維吉尼亞大學,機械工程學系,學士)

 

  • Bachelor of Art, Department of Music - Piano Performance & Pedagogy (Major) and Jazz Vocal (Minor), West Virginia University, USA

(美國西維吉尼亞大學,音樂藝術學系,學士主修: 鋼琴演奏與教學;副修: 人聲爵士)

 

arow.gif (1479 bytes)  經歷

  • Associate Professor, Feb., 2018~

(中山大學,專任副教授)

  • Assistant Professor, August/2010~Feberury/2018

(中山大學,專任助理教授)

  • Executive Director of European Union at NSYSU, July, 2013~

(中山大學歐盟中心,執行長)

  • Director of Office of International Affairs at NSYSU: Division of Oversea Compatriot and International Students Affairs, October, 2012~

(中山大學國際處,僑外生與陸生事務組,組長)

  • IEEE Young Professionals Program (formerly GOLD) Group of Tainan Section: Founder, and Vice Chair, Sept., 2012~

(IEEE Gold Affinity Group台南分會,發起人與副會長)

  • Director of Art Center: Supervisor of Operations, Supervisor of Operations, Technical, and Financial Manager, August/2011~July/ 2012

(中山大學藝文中心,管理組,組長)

 

arow.gif (1479 bytes)  研究領域

  • Computer Aided Engineering (電腦輔助工程)
  • Simulation approaches for estimating time to failure of electronic hardware under test and field conditions
  • Monte Carlo Simulation and FMEA (Failure Mode and Effect Analysis)
  • Simulation Based Failure Assessment

  • Reliability Analysis and Prediction (可靠度失效物理分析與評估)
  • Physics-of-Failure Based Reliability Prediction of meet customer expectations
  • Physics-of-Failure Principles for Designing-in Reliability in Electronic Systems
  • Lead-free and Green Electronics
  • Developing an accelerated product qualification and quality assurance program
  • Analyzing, Characterizing and Modeling the Failure Mechanisms in Electronic Components and Assemblies

  • Failure Mode and Effect Analysis (故障模式與影響分析)
  • Analysis of the system to determine effects of component failures on system performance and safety
  • Identification of components that are critical to safety Redesigning the system to improve “passive” reliability and safety
  • Improving maintenance routines to reduce the likelihood of component failures
  • Semiconductor Component Qualification Analysis
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