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Control Performance Improvement of Hydro-Viscous Clutch Based on Fuzzy-PID Controller
by
Hu, Dong
, Liao, Xiangping
, Gong, Guofang
, Yang, Shuai
, Peng, Xiongbin
in
Control algorithms
/ Controllers
/ Energy
/ Friction
/ Fuzzy logic
/ Fuzzy-PID control
/ Hydraulics
/ hydro-viscous clutch
/ mathematical model
/ pump control system
/ Simulation
/ speed fluctuation
/ Valves
/ Water supply
2021
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Control Performance Improvement of Hydro-Viscous Clutch Based on Fuzzy-PID Controller
by
Hu, Dong
, Liao, Xiangping
, Gong, Guofang
, Yang, Shuai
, Peng, Xiongbin
in
Control algorithms
/ Controllers
/ Energy
/ Friction
/ Fuzzy logic
/ Fuzzy-PID control
/ Hydraulics
/ hydro-viscous clutch
/ mathematical model
/ pump control system
/ Simulation
/ speed fluctuation
/ Valves
/ Water supply
2021
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Control Performance Improvement of Hydro-Viscous Clutch Based on Fuzzy-PID Controller
by
Hu, Dong
, Liao, Xiangping
, Gong, Guofang
, Yang, Shuai
, Peng, Xiongbin
in
Control algorithms
/ Controllers
/ Energy
/ Friction
/ Fuzzy logic
/ Fuzzy-PID control
/ Hydraulics
/ hydro-viscous clutch
/ mathematical model
/ pump control system
/ Simulation
/ speed fluctuation
/ Valves
/ Water supply
2021
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Control Performance Improvement of Hydro-Viscous Clutch Based on Fuzzy-PID Controller
Journal Article
Control Performance Improvement of Hydro-Viscous Clutch Based on Fuzzy-PID Controller
2021
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Overview
As a rotational speed controller, a hydro-viscous clutch (HVC) is usually used in the constant pressure water supply system to maintain the needed water pressure constant. However, when the hydro-viscous clutch is working, it often suffers from the problem of output rotational speed fluctuation since the spool of proportional relief valve can easily get stuck. Consequently, water pressure will fluctuate too. A special pump control system of HVC was proposed based on the Fuzzy-PID controller for the purpose of reducing the fluctuation rate. The MATLAB simulation was carried out according to the mathematical model and the results show that the Fuzzy-PID control strategy is superior to traditional PID control. The corresponding experiment was performed and the result indicate that through applying the Fuzzy-PID controller based pump control system, the rotational output speed fluctuation of HVC can be inhibited from ±60π to ±6π rad/min, and the water pressure fluctuation is dropped from ±0.1 to ±0.002 MPa.
Publisher
MDPI AG
Subject
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