A DOUBLE SKY-HOOK ALGORITHM FOR IMPROVING ROAD-HOLDING PROPERTY IN SEMI-ACTIVE SUSPENSION SYSTEMS FOR APPLICATION TO IN-WHEEL MOTOR

A Double Sky-Hook Algorithm for Improving Road-Holding Property in Semi-Active Suspension Systems for Application to In-Wheel Motor

A Double Sky-Hook Algorithm for Improving Road-Holding Property in Semi-Active Suspension Systems for Application to In-Wheel Motor

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This paper presents a double sky-hook algorithm for controlling semi-active suspension systems in order to improve road-holding property for ut solution gel for cats application in an in-wheel motor.The main disadvantage of the in-wheel motor is the increase in unsprung masses, which increases after shaking of the wheel, so it has poor road-holding that the conventional theoretical sky-hook algorithm cannot achieve.The double sky-hook algorithm uses a combination of damper coefficients, one from the chassis motion new belial model and the other from the wheel motion.Computer simulations using a quarter and full car dynamic models with the road conditions specified by ISO2631 showed the effectiveness of the algorithm.

It was observed that the algorithm was the most effective in the vicinity of the wheel hop frequency.This paper also proposed the parameter set of the double sky-hook algorithm to differentiate the driving mode of vehicles under advanced development.

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