Design of a filling ratio observer for a hydraulic retarder: An analysis of vehicle thermal management and dynamic braking system

Hydraulic retarders are auxiliary braking devices that reduce vehicle speed by converting its kinetic energy into thermal energy of a working fluid. This study analyzes the torque-output characteristics of a new type of hydraulic retarder and optimizes its control strategy under different braking co...

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Bibliographic Details
Main Authors: Hongpeng Zheng, Yulong Lei, Pengxiang Song
Format: Article
Language:English
Published: SAGE Publishing 2016-10-01
Series:Advances in Mechanical Engineering
Online Access:https://doi.org/10.1177/1687814016674098
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spelling doaj-4045b5af55af498ea97f5cd7379b16a12020-11-25T02:58:20ZengSAGE PublishingAdvances in Mechanical Engineering1687-81402016-10-01810.1177/1687814016674098Design of a filling ratio observer for a hydraulic retarder: An analysis of vehicle thermal management and dynamic braking systemHongpeng ZhengYulong LeiPengxiang SongHydraulic retarders are auxiliary braking devices that reduce vehicle speed by converting its kinetic energy into thermal energy of a working fluid. This study analyzes the torque-output characteristics of a new type of hydraulic retarder and optimizes its control strategy under different braking conditions. The design of an observer is based on an analysis of the vehicle dynamic system to ensure that it sets the control target of the dynamic filling ratio for hydraulic control system. With the assistance of the observer, the hydraulic retarder can produce the required braking torque as quickly and as accurately as possible. This study simulates a feedback control system of the vehicle dynamic model with the observer. The results prove that even if the vehicle is driven under complex conditions wherein the slope of the road is changed, the observer effectively sets a control target of the filling ratio for the hydraulic control system. This mechanism strengthens the adaptability and accuracy of the hydraulic retarder control strategy.https://doi.org/10.1177/1687814016674098
collection DOAJ
language English
format Article
sources DOAJ
author Hongpeng Zheng
Yulong Lei
Pengxiang Song
spellingShingle Hongpeng Zheng
Yulong Lei
Pengxiang Song
Design of a filling ratio observer for a hydraulic retarder: An analysis of vehicle thermal management and dynamic braking system
Advances in Mechanical Engineering
author_facet Hongpeng Zheng
Yulong Lei
Pengxiang Song
author_sort Hongpeng Zheng
title Design of a filling ratio observer for a hydraulic retarder: An analysis of vehicle thermal management and dynamic braking system
title_short Design of a filling ratio observer for a hydraulic retarder: An analysis of vehicle thermal management and dynamic braking system
title_full Design of a filling ratio observer for a hydraulic retarder: An analysis of vehicle thermal management and dynamic braking system
title_fullStr Design of a filling ratio observer for a hydraulic retarder: An analysis of vehicle thermal management and dynamic braking system
title_full_unstemmed Design of a filling ratio observer for a hydraulic retarder: An analysis of vehicle thermal management and dynamic braking system
title_sort design of a filling ratio observer for a hydraulic retarder: an analysis of vehicle thermal management and dynamic braking system
publisher SAGE Publishing
series Advances in Mechanical Engineering
issn 1687-8140
publishDate 2016-10-01
description Hydraulic retarders are auxiliary braking devices that reduce vehicle speed by converting its kinetic energy into thermal energy of a working fluid. This study analyzes the torque-output characteristics of a new type of hydraulic retarder and optimizes its control strategy under different braking conditions. The design of an observer is based on an analysis of the vehicle dynamic system to ensure that it sets the control target of the dynamic filling ratio for hydraulic control system. With the assistance of the observer, the hydraulic retarder can produce the required braking torque as quickly and as accurately as possible. This study simulates a feedback control system of the vehicle dynamic model with the observer. The results prove that even if the vehicle is driven under complex conditions wherein the slope of the road is changed, the observer effectively sets a control target of the filling ratio for the hydraulic control system. This mechanism strengthens the adaptability and accuracy of the hydraulic retarder control strategy.
url https://doi.org/10.1177/1687814016674098
work_keys_str_mv AT hongpengzheng designofafillingratioobserverforahydraulicretarderananalysisofvehiclethermalmanagementanddynamicbrakingsystem
AT yulonglei designofafillingratioobserverforahydraulicretarderananalysisofvehiclethermalmanagementanddynamicbrakingsystem
AT pengxiangsong designofafillingratioobserverforahydraulicretarderananalysisofvehiclethermalmanagementanddynamicbrakingsystem
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