首页|Ice-covered Environmental Adaptability Assessment for Overhead Contact System in High-speed Railways

Ice-covered Environmental Adaptability Assessment for Overhead Contact System in High-speed Railways

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High-speed trains rely on pantograph-catenary systems(PCSs)to collect electrical energy from power systems.However,the dynamic interaction between the pantograph and the catenary system may become mismatched once ice accumulates on the overhead conductors.More frequent arcing may occur within the PCS during train operation,posing an unpredictable threat to operational safety.Therefore,it is crucial to evaluate the ability of overhead contact system(OCS)to withstand ice-covered variability during line desgin.A new strategy is proposed to evaluate the adaptive performance of an OCS under various icing conditions.First,a dynamic model considering icing conditions is constructed to simulate the interaction within the PCS.Five different OCS structures with various icing thicknesses are studied.The parameters of the contact force within the PCS and proportion of high-possibility arcing moments are obtained.The dependence of the contact force on the icing thickness and pantograph displacement has been illustrated in the form of cloud maps.Finally,the OCS sensitivity coefficient is calculated,and ice-covered environmental adaptability assessments for the five different OCS structures are compared.

Overhead contact systemenvironmental adaptabilitysensitivity coefficienticing thicknesscontact force

Huan Zhang、Wenfu Wei、Like Pan、Zefeng Yang、Guizao Huang、Yuxin Liu、Xing Chen、Ziqian Yang、Guangning Wu

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School of Electrical Engineering,Southwest Jiaotong University,Chengdu 611756,China

National Rail Transit Electrification and Automation Engineering Technology Research Center,Southwest Jiaotong University,Chengdu 611756,China

China Academy of Railway Sciences Corporation Limited,Beijing 100000,China

China State Railway GroupCo.,LtdChengdu Guojia Electrical Engineering Co.,LtdNatural Science Foundation of Sichuan Province

L2022G006NEEC-2022-A042022NSFSC1863

2024

中国电气工程学报(英文)

中国电气工程学报(英文)

ISSN:
年,卷(期):2024.10(2)