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DCON26_SLIDES_Track15_Tutorial-SynergisticAutomotiveControlsofDynamicsEfficiencyforVehicleElectrification_15_88.pdf

上传人: 明**** 编号:1195533 2026-04-16 38页 3.91MB

1、Welcome to ConferenceFebruary 2426,2026Santa Clara Convention CenterExpoFebruary 2526,2026 1Tutorial Synergistic Automotive Controls of Dynamics&Efficiency for Vehicle ElectrificationXUBIN SONG,Zhejiang University of Science&Technology,China Supported by ePower Mobility LLC,USA2ImageSPEAKERSXubin So

2、ngProfessor(2023-present),Zhejiang University of Science&TechnologyCEO(2021-present),ePower Mobility LLCFellow(2013),American Society of Mechanical Engineers(ASME)Founding Editor-in-Chief(2010-),Inter.J.Powertrains(SCOPUS in 2017 and EI in 2022)|https:/ has a long&successful industry career at Eaton

3、 Corp(USA)and Weichai Power(China),two Fortune 500 companies.Over the past two decades,his research has primarily focused on advanced technologies in automotive chassis systems and commercial vehicle powertrain systems.His research focuses on efficiency and safety of motive powers,such as efficiency

4、 technology of applying low carbon fuels,and hydrogen safety technology as well as auto informatics.Dr.Song holds more than 10 patents and has over 50 innovative inventions to his name.To date,he has published more than 70 academic papers,including more than 20 journal articles,and has delivered ove

5、r 30 invited presentations at universities and industry events across the United States,China,Australia,Singapore,and other regions.He was awarded the Best Paper Award at the 2010 ASME Annual Conference.3Agenda Vehicle dynamic systems Controllable suspensions with regenerative functions Hybrid power

6、trains with regenerative functions Challenges of physics-driven control designs Trending:AI Powered Controls&Data-drivenAgenda Vehicle dynamic systems Controllable suspensions with regenerative functions Hybrid powertrains with regenerative functions Challenges of physics-driven control designs Tren

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1. **会议与主讲人**:2026年2月24-26日于圣克拉拉会议中心举办,主讲人Xubin Song(ASME Fellow,浙江理工大学教授,ePower Mobility CEO),拥有20余年汽车底盘与动力系统研究经验,获10余项专利、70余篇论文。 2. **核心议题**: - **车辆动态系统**:可控悬架(再生功能)、混合动力系统(飞轮/液压/电动),平衡舒适性与安全性。 - **控制挑战**:物理驱动控制非线性(如磁流变阻尼器滞后),需自适应算法提升稳定性。 - **AI与数据驱动**:传统控制瓶颈,需通过“汽车信息学(AuI)”构建数据语义层,结合AI(如PINN)优化SDV开发。 3. **技术突破**:自适应Skyhook控制解决悬架非线性,混合动力系统再生效率提升3-35%(路况相关)。
**悬挂能量回收?** **AI如何控车?** **数据如何解耦?**
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