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Impact of Vehicle Hybridization on Fuel Consumption Economy

Yıl 2017, Cilt: 4 Sayı: 2, 64 - 72, 10.08.2017

Öz

Air pollution, limited number of known
petroleum resources and increasing of greenhouse gases have led the governments
and researchers to have more investigation on Hybrid Electric Vehicles.
Considering technical availability and manufacturing facilities with regarding
to the final vehicle price, hybridization of conventional vehicles could be a
better choice than designing and manufacturing a new hybrid electric car.

Parallel-Series hybrid electric vehicles
(power-split) which is used in this study have low pollution and fuel consumption
compared to other hybrid structures and could be an appropriate choice for
hybridization. In addition, electric assist control strategy (EACS) is used as
an efficient strategy in this study since this method could decrease fuel
consumption and engine emission significantly for conventional vehicles and has
been used in most of successful commercial hybrid vehicles recently.





Gt-Power software is used for modelling
the Peugeot 206 vehicle platform and the proposed control strategy in this
study. For the testing and validation, standard international cycles for urban
and highway (FTP-75 and HFET) are used for both conventional and hybrid vehicle
and results showed significant reduction in fuel economy for both cycles, in
particular for urban cycle, this control strategy had the best efficiency and
fuel consumption reduced up to 27.6%.

Kaynakça

  • [1] G. Paganelli, G. Ercole, A. Brahma, Y. Guezennec, and G. Rizzoni, "General Supervisory Control Policy for the Energy Optimization of Charge-Sustaining Hybrid Electric Vehicles," JSAE Review, vol. 22, pp. 511-518.
  • [2] M. Ehsani, Y. Gao, S. Gay, and A. Emadi, Modern Electric, Hybrid Electric, and Fuel Cell Vehicles: Fundamentals, Theory and Design, FL: CRC Press.
  • [3] C. C. Lin, Z. S. Filipi, Y. Wang, L. S. Louca, H. Peng, D. N. Assanis, and J. L. Stein, "Integrated, Feed-Forward Hybrid Electric Vehicle Simulation in SIMULINK and its Use for Power Management Studies," SAE Paper No. 2001-01-1334.
  • [4] C. C. Lin, H. Peng, J. W. Grizzle, and J. Kang, "Power Management Strategy for a Parallel Hybrid Electric Truck," IEEE Transactions on Control Systems Technology, vol. 11, pp. 839-849.
  • [5] C. C. Lin, H. Peng, J. W. Grizzle, J. Liu, and M. Busdiecker, "Control System Development of an Advanced-Technology Medium-Duty Hybrid Electric Truck," SAE Paper 2003-01-3369.
  • [6] N. Schouten, M. Salman, and N. Kheir, "Fuzzy Logic Control for Parallel Hybrid Vehicles," IEEE Transactions on Control Systems Technology, vol. 10, pp. 460-468.
  • [7] Van Mierlo, J., “Views on hybrid drive train power management,” Proc. of the 17th International Electric Vehicle Symposiom, CD-ROM.
  • [8] I. Kolmanovsky, M. Nieuwstadt, and J. Sun, "Optimization of Complex Powertrain Systems for Fuel Economy and Emissions," presented at IEEE International Conference on Control Applications, Hawaii.
  • [9] J.-S. Won, R. Langari and M. Ehsani, “An Energy Management and Charge Sustaining Strategy for a Parallel Hybrid Vehicle with CVT”, IEEE TRANSACTIONS ON CONTROL SYSTEMS TECHNOLOGY, VOL. 13, NO. 2, pp. 313-320.
  • [10] B. M. Baumann, G. N. Washington, B. C. Glenn, and G. Rizzoni, "Mechatronic Design and Control of Hybrid Electric Vehicles," IEEE/ASME Transactions on Mechatronics, vol. 5, pp. 58-72.
  • [11] http://www.peugeot.com/en
  • [12] C. Desai, ‘’ Design and optimization of hybrid electric vehicle drivetrain and control strategy parameters using evolutionary algorithms”, thesis, Concordia university.
Yıl 2017, Cilt: 4 Sayı: 2, 64 - 72, 10.08.2017

Öz

Kaynakça

  • [1] G. Paganelli, G. Ercole, A. Brahma, Y. Guezennec, and G. Rizzoni, "General Supervisory Control Policy for the Energy Optimization of Charge-Sustaining Hybrid Electric Vehicles," JSAE Review, vol. 22, pp. 511-518.
  • [2] M. Ehsani, Y. Gao, S. Gay, and A. Emadi, Modern Electric, Hybrid Electric, and Fuel Cell Vehicles: Fundamentals, Theory and Design, FL: CRC Press.
  • [3] C. C. Lin, Z. S. Filipi, Y. Wang, L. S. Louca, H. Peng, D. N. Assanis, and J. L. Stein, "Integrated, Feed-Forward Hybrid Electric Vehicle Simulation in SIMULINK and its Use for Power Management Studies," SAE Paper No. 2001-01-1334.
  • [4] C. C. Lin, H. Peng, J. W. Grizzle, and J. Kang, "Power Management Strategy for a Parallel Hybrid Electric Truck," IEEE Transactions on Control Systems Technology, vol. 11, pp. 839-849.
  • [5] C. C. Lin, H. Peng, J. W. Grizzle, J. Liu, and M. Busdiecker, "Control System Development of an Advanced-Technology Medium-Duty Hybrid Electric Truck," SAE Paper 2003-01-3369.
  • [6] N. Schouten, M. Salman, and N. Kheir, "Fuzzy Logic Control for Parallel Hybrid Vehicles," IEEE Transactions on Control Systems Technology, vol. 10, pp. 460-468.
  • [7] Van Mierlo, J., “Views on hybrid drive train power management,” Proc. of the 17th International Electric Vehicle Symposiom, CD-ROM.
  • [8] I. Kolmanovsky, M. Nieuwstadt, and J. Sun, "Optimization of Complex Powertrain Systems for Fuel Economy and Emissions," presented at IEEE International Conference on Control Applications, Hawaii.
  • [9] J.-S. Won, R. Langari and M. Ehsani, “An Energy Management and Charge Sustaining Strategy for a Parallel Hybrid Vehicle with CVT”, IEEE TRANSACTIONS ON CONTROL SYSTEMS TECHNOLOGY, VOL. 13, NO. 2, pp. 313-320.
  • [10] B. M. Baumann, G. N. Washington, B. C. Glenn, and G. Rizzoni, "Mechatronic Design and Control of Hybrid Electric Vehicles," IEEE/ASME Transactions on Mechatronics, vol. 5, pp. 58-72.
  • [11] http://www.peugeot.com/en
  • [12] C. Desai, ‘’ Design and optimization of hybrid electric vehicle drivetrain and control strategy parameters using evolutionary algorithms”, thesis, Concordia university.
Toplam 12 adet kaynakça vardır.

Ayrıntılar

Konular Makine Mühendisliği
Bölüm Research Article
Yazarlar

Javad Rezaei

Yayımlanma Tarihi 10 Ağustos 2017
Gönderilme Tarihi 3 Mayıs 2017
Kabul Tarihi 1 Ağustos 2017
Yayımlandığı Sayı Yıl 2017 Cilt: 4 Sayı: 2

Kaynak Göster

APA Rezaei, J. (2017). Impact of Vehicle Hybridization on Fuel Consumption Economy. International Journal of Energy Applications and Technologies, 4(2), 64-72.
AMA Rezaei J. Impact of Vehicle Hybridization on Fuel Consumption Economy. IJEAT. Ağustos 2017;4(2):64-72.
Chicago Rezaei, Javad. “Impact of Vehicle Hybridization on Fuel Consumption Economy”. International Journal of Energy Applications and Technologies 4, sy. 2 (Ağustos 2017): 64-72.
EndNote Rezaei J (01 Ağustos 2017) Impact of Vehicle Hybridization on Fuel Consumption Economy. International Journal of Energy Applications and Technologies 4 2 64–72.
IEEE J. Rezaei, “Impact of Vehicle Hybridization on Fuel Consumption Economy”, IJEAT, c. 4, sy. 2, ss. 64–72, 2017.
ISNAD Rezaei, Javad. “Impact of Vehicle Hybridization on Fuel Consumption Economy”. International Journal of Energy Applications and Technologies 4/2 (Ağustos 2017), 64-72.
JAMA Rezaei J. Impact of Vehicle Hybridization on Fuel Consumption Economy. IJEAT. 2017;4:64–72.
MLA Rezaei, Javad. “Impact of Vehicle Hybridization on Fuel Consumption Economy”. International Journal of Energy Applications and Technologies, c. 4, sy. 2, 2017, ss. 64-72.
Vancouver Rezaei J. Impact of Vehicle Hybridization on Fuel Consumption Economy. IJEAT. 2017;4(2):64-72.