2020
DOI: 10.1016/j.apenergy.2020.115180
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A comprehensive comparison of the vehicle vibration energy harvesting abilities of the regenerative shock absorbers predicted by the quarter, half and full vehicle suspension system models

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Cited by 33 publications
(5 citation statements)
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“…A similar effect in terms of the amount of power recovered by a vehicle in urban traffic can be found in the publication [50]. The obtained power ranges from 71.3-387 W. Simulation and bench tests carried out in 2019-2020, on the basis of available technologies and control techniques, did not demonstrate a significant improvement in the efficiency of the suspension with energy recovery [51][52][53][54]. For vehicles driving on the road, the surface quality of the middle class ranges from 100 W to 400 W.…”
Section: Energy Of Damper Vibrationsupporting
confidence: 56%
“…A similar effect in terms of the amount of power recovered by a vehicle in urban traffic can be found in the publication [50]. The obtained power ranges from 71.3-387 W. Simulation and bench tests carried out in 2019-2020, on the basis of available technologies and control techniques, did not demonstrate a significant improvement in the efficiency of the suspension with energy recovery [51][52][53][54]. For vehicles driving on the road, the surface quality of the middle class ranges from 100 W to 400 W.…”
Section: Energy Of Damper Vibrationsupporting
confidence: 56%
“…Sin embargo, el dispositivo puede sufrir daños estructurales bajo el efecto de frecuencias altas de excitación, que generalmente ocurren cuando la velocidad de conducción del vehículo es grande. Más tarde, los mismos autores realizaron un análisis de sensibilidad paramétrica considerando los modelos dinámicos de la cuarta parte, la mitad y el completo del vehículo, determinando que el amortiguador regenerativo trabaja mejor a baja frecuencia de excitación [69] .…”
Section: Amortiguadores Regenerativos Electromecánicosunclassified
“…Inspirados en el trabajo de Zhang et al [69] , Abdelkareem et al [70] demostraron teóricamente mediante simulaciones numéricas exhaustivas que el amortiguador regenerativo mostrado en la Figura 11 puede cosechar hasta 200 watts cuando se acopla a modelos dinámicos de vehículos pesados con semirremolque articulado. Por otro lado, Salman et al [71] diseñaron un amortiguador regenerativo electromecánico basado principalmente en un módulo de transmisión de potencia mecánica, el cual consta de engranajes helicoidales y embragues unidireccionales de rodillos cónicos que convierten el movimiento vertical bidireccional del eje en movimiento rotacional unidireccional (Figura 12).…”
Section: Amortiguadores Regenerativos Electromecánicosunclassified
“…However, the saturation point of road congestion is unpredictable when it will occur. Poor transport infrastructure results in poor accessibility to livelihoods and adds to congestion problems [18]- [21]. In addition, the assessment of investment plans has not been adequate to prevent traffic problems [22]- [24].…”
Section: Introductionmentioning
confidence: 99%