2003Unpublished venueRequires access

An Analytical Evaluation of the Transient Dynamics of Semiactive Dampers

Mehdi Ahmadian, Nader Vahdati

Open publisher page 4 citations

Abstract

This paper provides an analytical evaluation of semiactive dampers, which have been more increasingly used for vehicle applications in the recent years, when transient dynamics are present. Although much research has been performed on various aspects of semiactive dampers, the vast majority of past studies have been performed for the steay sate aspects of such dampes. This study will extend the results of those studies, by providing an evaluation of semiactive dampers when they are subjected to a transient dynamics, such as a step input. The performance of a semiactive damper with two commonly used control methods—namely, skyhook control and hybrid control—is evaluated analytically, using a single suspension model. In addition to evaluating such metrics as the peak response and settling time of the spring body, this analysis will include an evaluation of the work performed by semiactive dampers. A comparison with passive suspensions shows that the semiactive suspensions that are considered here could improve various aspects of vehicle ride comfort and handling, within the limitation of a single suspension model. Field-testing of the semiactive dampers discussed here would, of course, provide more conclusive evidence on their benefits for controlling vehicle transient dynamics.

About this research paper

What this paper is about

This paper provides an analytical evaluation of semiactive dampers, which have been more increasingly used for vehicle applications in the recent years, when transient dynamics are present. Although much research has been performed on various aspects of semiactive dampers, the vast majority of past studies have been performed for the steay sate aspects of such dampes. This study will extend the results of those studies, by providing an evaluation of semiactive dampers when they are subjected to a transient dynamics, such as a step input. The performance of a semiactive damper with two commonly used control methods—namely, skyhook control and hybrid control—is evaluated analytically, using a single suspension model. In addition to evaluating such metrics as the peak response and settling time of the spring body, this analysis will include an evaluation of the work performed by semiactive dampers. A comparison with passive suspensions shows that the semiactive suspensions that are considered here could improve various aspects of vehicle ride comfort and handling, within the limitation of a single suspension model. Field-testing of the semiactive dampers discussed here would, of course, provide more conclusive evidence on their benefits for controlling vehicle transient dynamics.

Why it matters

OpenAlex reports 4 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

This paper provides an analytical evaluation of semiactive dampers, which have been more increasingly used for vehicle applications in the recent years, when transient dynamics are present. Although much research has been performed on various aspects of semiactive dampers, the vast majority of past studies have been performed for the steay sate aspects of such dampes. This study will extend the results of those studies, by providing an evaluation of semiactive dampers when they are subjected to a transient dynamics, such as a step input. The performance of a semiactive damper with two commonly used control methods—namely, skyhook control and hybrid control—is evaluated analytically, using a single suspension model. In addition to evaluating such metrics as the peak response and settling time of the spring body, this analysis will include an evaluation of the work performed by semiactive dampers. A comparison with passive suspensions shows that the semiactive suspensions that are considered here could improve various aspects of vehicle ride comfort and handling, within the limitation of a single suspension model. Field-testing of the semiactive dampers discussed here would, of course, provide more conclusive evidence on their benefits for controlling vehicle transient dynamics.

Key concepts: Damper, Skyhook, Transient (computer programming), Suspension (topology), Control theory (sociology), Engineering, Work (physics), Computer science

Related papers

Back to paper searchBrowse research topicsOriginal source
An Analytical Evaluation of the Transient Dynamics of Semiactive Dampers — Research Paper | ScholarLens