Modeling and Experimental Validation of the Time Delay in a Pilot Operated Proportional Directional Valve
The pilot-operated proportional directional valve is a crucial component in the airplane landing gear retraction system. The time delay of the proportional valve directly affects the retraction behavior even the flight safety and needs to be analyzed. Therefore, the modeling and analysis of a typica...
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doaj-1c776a496b5b4451a27214b903bc23532021-03-29T20:49:13ZengIEEEIEEE Access2169-35362018-01-016303553036910.1109/ACCESS.2018.28441648372918Modeling and Experimental Validation of the Time Delay in a Pilot Operated Proportional Directional ValveJunhui Zhang0Di Wang1Bing Xu2https://orcid.org/0000-0003-0236-7896Zhenyu Lu3Minyao Gan4Qi Su5State Key Laboratory of Fluid Power and Mechatronic Systems, Zhejiang University, Hangzhou, ChinaState Key Laboratory of Fluid Power and Mechatronic Systems, Zhejiang University, Hangzhou, ChinaState Key Laboratory of Fluid Power and Mechatronic Systems, Zhejiang University, Hangzhou, ChinaState Key Laboratory of Fluid Power and Mechatronic Systems, Zhejiang University, Hangzhou, ChinaShanghai Marine Equipment Research Institute, Shanghai, ChinaSchool of Mechanical Engineering, Zhejiang University, Hangzhou, ChinaThe pilot-operated proportional directional valve is a crucial component in the airplane landing gear retraction system. The time delay of the proportional valve directly affects the retraction behavior even the flight safety and needs to be analyzed. Therefore, the modeling and analysis of a typical pilot-operated proportional directional valve are presented in this paper. Substantially, the nonlinear valve system is composed of four subsystems: mechanical, electronic, electromagnetic, and fluid dynamic subsystems. The subsystems are modeled based on a lumped parameter approach. The coupling among the subsystems is analyzed. The nonlinearity is implemented using a specific set of equations in the model. Especially, the nonlinearity observed in practical application is considered in modeling the effect of the electronic anti-unloading power drive circuit on the pulse-width modulation signal. The analytical results of the model show good agreement with the experimental ones. The investigation shows that the delay of the valve results from multiple subsystems' dynamic performances which act sequentially on the main spool. The effect of the electronic part and the structural part is analyzed, and the proportion of each part is given based on the simulation results. The analysis shows that the model can provide a direct suggestion in choosing the valve part to optimize and the optimization effect limit.https://ieeexplore.ieee.org/document/8372918/Aerospace engineeringelectrohydraulicsmodelingproportional directional valvetime delay |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Junhui Zhang Di Wang Bing Xu Zhenyu Lu Minyao Gan Qi Su |
spellingShingle |
Junhui Zhang Di Wang Bing Xu Zhenyu Lu Minyao Gan Qi Su Modeling and Experimental Validation of the Time Delay in a Pilot Operated Proportional Directional Valve IEEE Access Aerospace engineering electrohydraulics modeling proportional directional valve time delay |
author_facet |
Junhui Zhang Di Wang Bing Xu Zhenyu Lu Minyao Gan Qi Su |
author_sort |
Junhui Zhang |
title |
Modeling and Experimental Validation of the Time Delay in a Pilot Operated Proportional Directional Valve |
title_short |
Modeling and Experimental Validation of the Time Delay in a Pilot Operated Proportional Directional Valve |
title_full |
Modeling and Experimental Validation of the Time Delay in a Pilot Operated Proportional Directional Valve |
title_fullStr |
Modeling and Experimental Validation of the Time Delay in a Pilot Operated Proportional Directional Valve |
title_full_unstemmed |
Modeling and Experimental Validation of the Time Delay in a Pilot Operated Proportional Directional Valve |
title_sort |
modeling and experimental validation of the time delay in a pilot operated proportional directional valve |
publisher |
IEEE |
series |
IEEE Access |
issn |
2169-3536 |
publishDate |
2018-01-01 |
description |
The pilot-operated proportional directional valve is a crucial component in the airplane landing gear retraction system. The time delay of the proportional valve directly affects the retraction behavior even the flight safety and needs to be analyzed. Therefore, the modeling and analysis of a typical pilot-operated proportional directional valve are presented in this paper. Substantially, the nonlinear valve system is composed of four subsystems: mechanical, electronic, electromagnetic, and fluid dynamic subsystems. The subsystems are modeled based on a lumped parameter approach. The coupling among the subsystems is analyzed. The nonlinearity is implemented using a specific set of equations in the model. Especially, the nonlinearity observed in practical application is considered in modeling the effect of the electronic anti-unloading power drive circuit on the pulse-width modulation signal. The analytical results of the model show good agreement with the experimental ones. The investigation shows that the delay of the valve results from multiple subsystems' dynamic performances which act sequentially on the main spool. The effect of the electronic part and the structural part is analyzed, and the proportion of each part is given based on the simulation results. The analysis shows that the model can provide a direct suggestion in choosing the valve part to optimize and the optimization effect limit. |
topic |
Aerospace engineering electrohydraulics modeling proportional directional valve time delay |
url |
https://ieeexplore.ieee.org/document/8372918/ |
work_keys_str_mv |
AT junhuizhang modelingandexperimentalvalidationofthetimedelayinapilotoperatedproportionaldirectionalvalve AT diwang modelingandexperimentalvalidationofthetimedelayinapilotoperatedproportionaldirectionalvalve AT bingxu modelingandexperimentalvalidationofthetimedelayinapilotoperatedproportionaldirectionalvalve AT zhenyulu modelingandexperimentalvalidationofthetimedelayinapilotoperatedproportionaldirectionalvalve AT minyaogan modelingandexperimentalvalidationofthetimedelayinapilotoperatedproportionaldirectionalvalve AT qisu modelingandexperimentalvalidationofthetimedelayinapilotoperatedproportionaldirectionalvalve |
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