2018
DOI: 10.1177/1461348418756018
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Experimental analysis of vibration control algorithms applied for an off-road vehicle with magnetorheological dampers

Abstract: The paper presents an experimental analysis of the selected feedback vibration control schemes dedicated to magnetorheological dampers, related to ride comfort and road holding. They were applied in a complex vibration control system installed in a commercially available off-road vehicle. Original shock-absorbers of the vehicle were replaced with magnetorheological dampers. The control system takes advantage of numerous sensors installed in the vehicle tracking its motion, i.e. accelerometers, suspension defle… Show more

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Cited by 23 publications
(17 citation statements)
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References 31 publications
(55 reference statements)
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“…The frequency response of suspension dynamic displacement is illustrated in Figure 3b. The performance of hybrid control is better than the sky-hook control under high vibration (5)(6)(7)(8)(9)(10)(11)(12), although hybrid control is still at a disadvantage to the passive suspension. Meanwhile, the ground-hook control performs best of all under high frequency (5)(6)(7)(8)(9)(10)(11)(12), worst under low frequency (0-5 Hz).…”
Section: Of 25mentioning
confidence: 99%
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“…The frequency response of suspension dynamic displacement is illustrated in Figure 3b. The performance of hybrid control is better than the sky-hook control under high vibration (5)(6)(7)(8)(9)(10)(11)(12), although hybrid control is still at a disadvantage to the passive suspension. Meanwhile, the ground-hook control performs best of all under high frequency (5)(6)(7)(8)(9)(10)(11)(12), worst under low frequency (0-5 Hz).…”
Section: Of 25mentioning
confidence: 99%
“…The performance of hybrid control is better than the sky-hook control under high vibration (5)(6)(7)(8)(9)(10)(11)(12), although hybrid control is still at a disadvantage to the passive suspension. Meanwhile, the ground-hook control performs best of all under high frequency (5)(6)(7)(8)(9)(10)(11)(12), worst under low frequency (0-5 Hz). Figure 3c illustrates that the tire dynamic deformation gain of hybrid control is slightly higher than passive suspension under high frequency (5)(6)(7)(8)(9)(10)(11)(12).…”
Section: Of 25mentioning
confidence: 99%
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“…Most of the quantities that are measured in science and industry are non-electrical and, most often, they are converted into electrical quantities using specialised sensors and electronic devices. In the literature, one can find many examples from medicine [1], analyses of drive failures [2], audio signal processing [3], vibration analyses [4,5], noise reduction [6,7], astronomical aspects [8,9], frequency measurement [10] and many more. A very important issue when measuring non-electrical quantities is the method of data acquisition.…”
Section: Introductionmentioning
confidence: 99%