Shield Reliability Analysis-Based Transfer Impedance Optimization Model for Double Shielded Cable of Electric Vehicle

Due to the high-voltage and high-current operating characteristics of the electric drive system of electric vehicles, it forms strong electromagnetic interference during the working process. The shielding effectiveness of the high-voltage connection cable that connects the components of the electric...

Full description

Bibliographic Details
Main Authors: Xiaoshan Wu, Xiaohui Shi, Jin Jia, Heming Zhao, Xu Li
Format: Article
Language:English
Published: Hindawi Limited 2021-01-01
Series:Mathematical Problems in Engineering
Online Access:http://dx.doi.org/10.1155/2021/5373094
id doaj-56dc56a9146b41bcbda5aaec8deacc80
record_format Article
spelling doaj-56dc56a9146b41bcbda5aaec8deacc802021-02-22T00:01:52ZengHindawi LimitedMathematical Problems in Engineering1563-51472021-01-01202110.1155/2021/5373094Shield Reliability Analysis-Based Transfer Impedance Optimization Model for Double Shielded Cable of Electric VehicleXiaoshan Wu0Xiaohui Shi1Jin Jia2Heming Zhao3Xu Li4School of Automotive EngineeringVehicle Engineering InstituteVehicle Engineering InstituteChongqing Qingyan Ligong Electronic Technology Co., Ltd.Vehicle Engineering InstituteDue to the high-voltage and high-current operating characteristics of the electric drive system of electric vehicles, it forms strong electromagnetic interference during the working process. The shielding effectiveness of the high-voltage connection cable that connects the components of the electric drive system is directly related to its electromagnetic interference emissions. Therefore, the modeling and analysis of the shielding effectiveness of the connection cable is very important for the development of a connection cable with good shielding effectiveness. Firstly, the transfer impedance value representing the shielding effectiveness of the shielded cable is analyzed, and the difference between the single-layer shield and the double-layer shield cable is compared. The influence of double-layer shielded high-voltage connection cables commonly used in electric vehicles on the shielding layer DC resistance and keyhole inductance is clarified. Secondly, the transfer impedance optimization model ZT_D-Desmoulins is obtained by combining with the single-layer shielded cable Desmoulins model and considering the influence of shielded layer DC resistance and keyhole inductance. Finally, three double-layer shielded cables of different types were selected for the triaxial test. The error rates of the test data and the ZT_D-Desmoulin optimization model are all lower than 20% in each frequency band, which verified the correctness, universality, and great engineering application value of the optimization model.http://dx.doi.org/10.1155/2021/5373094
collection DOAJ
language English
format Article
sources DOAJ
author Xiaoshan Wu
Xiaohui Shi
Jin Jia
Heming Zhao
Xu Li
spellingShingle Xiaoshan Wu
Xiaohui Shi
Jin Jia
Heming Zhao
Xu Li
Shield Reliability Analysis-Based Transfer Impedance Optimization Model for Double Shielded Cable of Electric Vehicle
Mathematical Problems in Engineering
author_facet Xiaoshan Wu
Xiaohui Shi
Jin Jia
Heming Zhao
Xu Li
author_sort Xiaoshan Wu
title Shield Reliability Analysis-Based Transfer Impedance Optimization Model for Double Shielded Cable of Electric Vehicle
title_short Shield Reliability Analysis-Based Transfer Impedance Optimization Model for Double Shielded Cable of Electric Vehicle
title_full Shield Reliability Analysis-Based Transfer Impedance Optimization Model for Double Shielded Cable of Electric Vehicle
title_fullStr Shield Reliability Analysis-Based Transfer Impedance Optimization Model for Double Shielded Cable of Electric Vehicle
title_full_unstemmed Shield Reliability Analysis-Based Transfer Impedance Optimization Model for Double Shielded Cable of Electric Vehicle
title_sort shield reliability analysis-based transfer impedance optimization model for double shielded cable of electric vehicle
publisher Hindawi Limited
series Mathematical Problems in Engineering
issn 1563-5147
publishDate 2021-01-01
description Due to the high-voltage and high-current operating characteristics of the electric drive system of electric vehicles, it forms strong electromagnetic interference during the working process. The shielding effectiveness of the high-voltage connection cable that connects the components of the electric drive system is directly related to its electromagnetic interference emissions. Therefore, the modeling and analysis of the shielding effectiveness of the connection cable is very important for the development of a connection cable with good shielding effectiveness. Firstly, the transfer impedance value representing the shielding effectiveness of the shielded cable is analyzed, and the difference between the single-layer shield and the double-layer shield cable is compared. The influence of double-layer shielded high-voltage connection cables commonly used in electric vehicles on the shielding layer DC resistance and keyhole inductance is clarified. Secondly, the transfer impedance optimization model ZT_D-Desmoulins is obtained by combining with the single-layer shielded cable Desmoulins model and considering the influence of shielded layer DC resistance and keyhole inductance. Finally, three double-layer shielded cables of different types were selected for the triaxial test. The error rates of the test data and the ZT_D-Desmoulin optimization model are all lower than 20% in each frequency band, which verified the correctness, universality, and great engineering application value of the optimization model.
url http://dx.doi.org/10.1155/2021/5373094
work_keys_str_mv AT xiaoshanwu shieldreliabilityanalysisbasedtransferimpedanceoptimizationmodelfordoubleshieldedcableofelectricvehicle
AT xiaohuishi shieldreliabilityanalysisbasedtransferimpedanceoptimizationmodelfordoubleshieldedcableofelectricvehicle
AT jinjia shieldreliabilityanalysisbasedtransferimpedanceoptimizationmodelfordoubleshieldedcableofelectricvehicle
AT hemingzhao shieldreliabilityanalysisbasedtransferimpedanceoptimizationmodelfordoubleshieldedcableofelectricvehicle
AT xuli shieldreliabilityanalysisbasedtransferimpedanceoptimizationmodelfordoubleshieldedcableofelectricvehicle
_version_ 1714852921629212672