設計+不確定因素
Design + Uncertainty
複雜系統+不確定因素
Complex System +
Uncertainty
動態+規劃
Dynamic + Planning
智慧載具+可靠度
Intelligent
Vehicle + Reliability
智慧型載具之可靠度評估與驗證
隨著使用者對汽車的電子整合與安全輔助需求逐日提昇,車用電子電機的複雜度也日益增加,這樣的狀況廣泛的延伸到各式載具。然而整合後的系統雖功能變得十分強大,也對環境相對敏感,例如電動車的可靠度容易受到溫度變化與操作時環境震動所影響。為了達到高品質的智慧型載具的目標,智慧化必須與高可靠度同時並存。此類研究於2013年開始於本實驗室展開,因此仍在累積研究成果,目前有的成果列舉如下:
著作|Publications
- Y.-C. Chang, H.-W. Huang, K.-Y. Chan, W.-F. Wu and T.-C. Liu,
"Enhanced Markovian Model with Physics of Failures for Long-term
Reliability Analysis of Electrical Systems", the 14th World Congress in Mechanism and Machine Science,
Taipei, Taiwan, October 25-30, 2015
- D. Su and K.-Y. Chan, "Compensating for Operational Uncertainty in Man-Machine Systems : A
Case Study on Intelligent Vehicle Parking Assist System", ASCE-ASME Journal of Risk and Uncertainty in Engineering
Systems : Part B. Mechanical Engineering, 2015
- S.-C. Chang and K.-Y. Chan, "A Preliminary Study on the Integration of Engineering and Aesthetics
Measures via the Design of Vehicle Silhouettes", Journal of Mechanical Engineering Science, 2014
- Y.-A. Lin and K.-Y. Chan, "Comparisons between Direct and Inverse Analysis Methods in Continuous
Variable Transmissions with Comprehensive Component Specifications", the 31st Chinese Society of Mechanical Engineers Conference,
Taichung, Taiwan, 2014
- Y.-A. Lin and K.-Y. Chan, "A Direct Simulation Method for Continuous Variable Transmission with
Component-wise Design Specifications",
Mechanism and Mechanical Technology Conference, Taichung, Taiwan, 2014