TAŞIT SÜSPANSİYONLARINDAN KİNETİK ENERJİ GERİ KAZANIMI
Öz
Anahtar Kelimeler
süspansiyon , Enerji geri kazanımı , Darbe sönümleyici , enerji
References
- Url-1 “http://www.audi.com.tr/tr/brand/tr /Efficiency/efficiency_technologies. recuperation html”, alındığı tarih: 29.06.2017.
- Url-2 “http://www.skf.com/group/investors/press-releases/skf-cooperates-volvo -evaluate-industrialization-flywheel-systems”, alındığı tarih: 30.06.2017.
- Huang, B., Hsieh, C. Y., Golnaraghi, F., & Moallem, M. (2015). Development and optimization of an energy-regenerative suspension system under stochastic road excitation. Journal of Sound and Vibration, 357, 16-34.
- Shi, D., Pisu, P., Chen, L., Wang, S., & Wang, R. (2016). Control design and fuel economy investigation of power split HEV with energy regeneration of suspension. Applied Energy, 182, 576-589.
- Reddy, K. V., Kodati, M., Chatra, K., & Bandyopadhyay, S. (2016). A comprehensive kinematic analysis of the double wishbone and MacPherson strut suspension systems. Mechanism and Machine Theory, 105, 441-470.
- Montazeri-Gh, M., & Mahmoodi-k, M. (2015). Development a new power management strategy for power split hybrid electric vehicles. Transportation Research Part D: Transport and Environment, 37, 79-96.
- Url-3 “https://www.audi.com.tr/tr/web/tr/modeller/layer/teknoloji/enerji-geri-kazanimi.html” alındığı tarih: 29.06.2017