Scheme for optimising the power of an induction motor utilising FLC in an electric vehicle
Abstract & Details
Research Area
ELECTRICAL ENGINEERING
Keywords
Induction motor
FLC
Electric vehicle
Abstract
Energy efficiency is crucial in electric and hybrid vehicles (EVs) since their energy storage capacity is restricted. In addition to its great stability and inexpensive cost, loss minimization increases the induction motor's efficiency. Additionally, while it is functioning at a load lower than maximum, it may use more power than is necessary to do its task. This research suggests a fuzzy logic control (FLC)-based approach for electric vehicle applications. The FLC controller can conserve more power and enhance the amplitude of the beginning current. The MATLAB/SIMULINK software programme was utilised to verify the control's performance through simulation. The simulation schemes demonstrate rapid rejection of disturbances affecting the system and good, high-performance outcomes in the time-domain response when compared to the traditional proportional integral derivative controller. As a result, the induction motor's core losses are significantly decreased, increasing the driving system's efficiency..
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Author Information
| # | Name | Institute / Affiliation |
|---|---|---|
| 1 | GANDHAM UDAY KIRAN | Sanketika vidhya parishad engineering college |
| 2 | BHAGYASHREE BEHARA | Sanketika vidhya parishad engineering college |
| 3 | TELU LAKSHMI NARAYANA | Sanketika vidhya parishad engineering college |
| 4 | DANDA KARTHIK | Sanketika vidhya parishad engineering college |
| 5 | RONGALA HEMA VENKATA VANAJA | Sanketika vidhya parishad engineering college |
| 6 | KASARAPU SATHISH KUMAR | Sanketika vidhya parishad engineering college |
How to Cite
Use the following formats to cite this article in your research.
APA Style
KIRAN, GANDHAM UDAY, BEHARA, BHAGYASHREE, NARAYANA, TELU LAKSHMI, KARTHIK, DANDA, VANAJA, RONGALA HEMA VENKATA, & KUMAR, KASARAPU SATHISH (2024). Scheme for optimising the power of an induction motor utilising FLC in an electric vehicle. International Journal of Advance Research and Innovative Ideas In Education, 10(2), 3286-3296.
MLA Style
KIRAN, GANDHAM UDAY, et al. "Scheme for optimising the power of an induction motor utilising FLC in an electric vehicle." International Journal of Advance Research and Innovative Ideas In Education, vol. 10, no. 2, 2024, pp. 3286-3296.
IEEE Style
GANDHAM UDAY KIRAN, BHAGYASHREE BEHARA, TELU LAKSHMI NARAYANA, DANDA KARTHIK, RONGALA HEMA VENKATA VANAJA, and KASARAPU SATHISH KUMAR, "Scheme for optimising the power of an induction motor utilising FLC in an electric vehicle," International Journal of Advance Research and Innovative Ideas In Education, vol. 10, no. 2, pp. 3286-3296, 2024.
Vancouver Style
KIRAN GANDHAM UDAY, BEHARA BHAGYASHREE, NARAYANA TELU LAKSHMI, KARTHIK DANDA, VANAJA RONGALA HEMA VENKATA, KUMAR KASARAPU SATHISH. Scheme for optimising the power of an induction motor utilising FLC in an electric vehicle. International Journal of Advance Research and Innovative Ideas In Education. 2024;10(2):3286-3296.
Harvard Style
KIRAN, GANDHAM UDAY, BEHARA, BHAGYASHREE, NARAYANA, TELU LAKSHMI, KARTHIK, DANDA, VANAJA, RONGALA HEMA VENKATA, & KUMAR, KASARAPU SATHISH (2024) 'Scheme for optimising the power of an induction motor utilising FLC in an electric vehicle', International Journal of Advance Research and Innovative Ideas In Education, 10(2), pp. 3286-3296.
Chicago Style
KIRAN, GANDHAM UDAY, et al. "Scheme for optimising the power of an induction motor utilising FLC in an electric vehicle." International Journal of Advance Research and Innovative Ideas In Education 10, no. 2 (2024): 3286-3296.
Turabian Style
KIRAN, GANDHAM UDAY, et al. "Scheme for optimising the power of an induction motor utilising FLC in an electric vehicle." International Journal of Advance Research and Innovative Ideas In Education 10, no. 2 (2024): 3286-3296.
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