Investigation of methods for measuring fuel economy and emissions of heavy-duty hybrid-electric vehicles (HEVs)

Hybrid-electric vehicles can achieve low fuel consumption and emission by optimal combination of electrical energy and internal combustion engine power. There are four main test method of energy consumption and emission for heavy-duty HEVs, including traditional engine bench test, powertrain test, H...

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Main Authors: Zhao Jianfu, Zhang Dan, Gao Dongzhi, Bao Junjiang, Jing Xiaojun, Li Mingxuan
Format: Article
Language:English
Published: EDP Sciences 2022-01-01
Series:E3S Web of Conferences
Subjects:
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2022/27/e3sconf_vesep2022_01002.pdf
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author Zhao Jianfu
Zhang Dan
Gao Dongzhi
Bao Junjiang
Jing Xiaojun
Li Mingxuan
author_facet Zhao Jianfu
Zhang Dan
Gao Dongzhi
Bao Junjiang
Jing Xiaojun
Li Mingxuan
author_sort Zhao Jianfu
collection DOAJ
description Hybrid-electric vehicles can achieve low fuel consumption and emission by optimal combination of electrical energy and internal combustion engine power. There are four main test method of energy consumption and emission for heavy-duty HEVs, including traditional engine bench test, powertrain test, HILS and chassis dynamometer test. The tradition engine operating conditions are distinguished from that in HEVs, which can’t reflect the performance of HEVs. Powertrain test can achieve braking energy regeneration, but need bulky installation on testbed. HILS test solves the problem that the engine test cycle is different from the actual operating condition on road and is cost-effective. However, it requires a lot of effort to monitor the HILS simulation input parameters and carry out vehicle validation. Chassis dynamometer test method can better reflect the real-road driving condition. But it is nearly impossible to test all different HEVs types on chassis dynamometer and the test cost is very expensive. By comparing different heavy-duty HEVs energy consumption and emission test methods, the advantages and disadvantages are identified, which provides guidance for the formulation of the next-stage standards of heavy-duty HEV, and promotes the healthy and orderly development of the HEV industry.
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spelling doaj.art-2d04137974cc43338b887d464866b6d02022-12-22T04:41:03ZengEDP SciencesE3S Web of Conferences2267-12422022-01-013600100210.1051/e3sconf/202236001002e3sconf_vesep2022_01002Investigation of methods for measuring fuel economy and emissions of heavy-duty hybrid-electric vehicles (HEVs)Zhao Jianfu0Zhang Dan1Gao Dongzhi2Bao Junjiang3Jing Xiaojun4Li Mingxuan5CATARC Automotive Test Center (Tianjin) Co., Ltd.WEICHAI POWER Co., Ltd.CATARC Automotive Test Center (Tianjin) Co., Ltd.CATARC Automotive Test Center (Tianjin) Co., Ltd.CATARC Automotive Test Center (Tianjin) Co., Ltd.CATARC Automotive Test Center (Tianjin) Co., Ltd.Hybrid-electric vehicles can achieve low fuel consumption and emission by optimal combination of electrical energy and internal combustion engine power. There are four main test method of energy consumption and emission for heavy-duty HEVs, including traditional engine bench test, powertrain test, HILS and chassis dynamometer test. The tradition engine operating conditions are distinguished from that in HEVs, which can’t reflect the performance of HEVs. Powertrain test can achieve braking energy regeneration, but need bulky installation on testbed. HILS test solves the problem that the engine test cycle is different from the actual operating condition on road and is cost-effective. However, it requires a lot of effort to monitor the HILS simulation input parameters and carry out vehicle validation. Chassis dynamometer test method can better reflect the real-road driving condition. But it is nearly impossible to test all different HEVs types on chassis dynamometer and the test cost is very expensive. By comparing different heavy-duty HEVs energy consumption and emission test methods, the advantages and disadvantages are identified, which provides guidance for the formulation of the next-stage standards of heavy-duty HEV, and promotes the healthy and orderly development of the HEV industry.https://www.e3s-conferences.org/articles/e3sconf/pdf/2022/27/e3sconf_vesep2022_01002.pdfheavy-duty hevsenergy consumption and emission test methodspowertrain testchassis dynamometer testhils test
spellingShingle Zhao Jianfu
Zhang Dan
Gao Dongzhi
Bao Junjiang
Jing Xiaojun
Li Mingxuan
Investigation of methods for measuring fuel economy and emissions of heavy-duty hybrid-electric vehicles (HEVs)
E3S Web of Conferences
heavy-duty hevs
energy consumption and emission test methods
powertrain test
chassis dynamometer test
hils test
title Investigation of methods for measuring fuel economy and emissions of heavy-duty hybrid-electric vehicles (HEVs)
title_full Investigation of methods for measuring fuel economy and emissions of heavy-duty hybrid-electric vehicles (HEVs)
title_fullStr Investigation of methods for measuring fuel economy and emissions of heavy-duty hybrid-electric vehicles (HEVs)
title_full_unstemmed Investigation of methods for measuring fuel economy and emissions of heavy-duty hybrid-electric vehicles (HEVs)
title_short Investigation of methods for measuring fuel economy and emissions of heavy-duty hybrid-electric vehicles (HEVs)
title_sort investigation of methods for measuring fuel economy and emissions of heavy duty hybrid electric vehicles hevs
topic heavy-duty hevs
energy consumption and emission test methods
powertrain test
chassis dynamometer test
hils test
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2022/27/e3sconf_vesep2022_01002.pdf
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