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High-Speed EMU TCMS Design and LCC Technology Research 被引量:3
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作者 Hongwei Zhao Zhiping Huang Ying Mei 《Engineering》 SCIE EI 2017年第1期122-129,共8页
This paper introduces the high-speed electrical multiple unit (EMO) life cycle, including the design, manufacturing, testing, and maintenance stages. It also presents the train control and monitoring system (TCMS)... This paper introduces the high-speed electrical multiple unit (EMO) life cycle, including the design, manufacturing, testing, and maintenance stages. It also presents the train control and monitoring system (TCMS) software development platform, the TCMS testing and verification bench, the EMU driving simulation platform, and the EMU remote data transmittal and maintenance platform. All these platforms and benches combined together make up the EMU life cycle cost (LCC) system. Each platform facilitates EMU LCC management and is an important part of the system. 展开更多
关键词 Electrical multiple unit Train control and monitoring system Train communication network Life cycle cost Development platform Testing bench Simulation Remote data transmittal
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Advanced Functional Optical Fiber Sensors for Smart Battery Monitoring
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作者 Zhi Liu Yang Lu +7 位作者 Xiao Ma Yun He Mingzhe Fu Shuaishuai Yan Changjian Li Xuan Song Haiyu Zhou Kai Liu 《Energy Material Advances》 CSCD 2024年第1期16-33,共18页
With the increasing demand for batteries,the real-time in situ monitoring of the physical/chemical state within the“black box”is critical to improving battery performance.Consequently,the development of a cost-effec... With the increasing demand for batteries,the real-time in situ monitoring of the physical/chemical state within the“black box”is critical to improving battery performance.Consequently,the development of a cost-effective and in situ battery monitoring system that does not interfere with the normal operation of the battery is imminent.Traditional monitoring techniques are constrained by size,reliability,and scalability.Optical fiber sensors offer a distinctive advantage in enabling highly sensitive,multiparameter in situ measurements in the harsh electrochemical environment of batteries.By decoding these characteristic parameters,it helps to establish the evolution mechanism of the battery’s safety state.Additionally,the integration of advanced lab-on-fiber technology with battery monitoring systems has attracted considerable attention.This review summarizes the recent advances in optical fiber sensing technology in the fields of battery temperature and mechanical stress/strain and provides an outlook on the future challenges and development of smart batteries. 展开更多
关键词 electrochemical environment physical chemical state fiber sensors improving battery smart battery monitoring cost effective monitoring system lab fiber technology advanced functional optical fiber sensors
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