A comprehensive study of key electric vehicle (EV) components, technologies, challenges, impacts, and future direction of development

F Un-Noor, S Padmanaban, L Mihet-Popa, MN Mollah… - Energies, 2017 - mdpi.com
Electric vehicles (EV), including Battery Electric Vehicle (BEV), Hybrid Electric Vehicle
(HEV), Plug-in Hybrid Electric Vehicle (PHEV), Fuel Cell Electric Vehicle (FCEV), are …

Critical review on torque ripple sources and mitigation control strategies of BLDC motors in electric vehicle applications

N Prabhu, R Thirumalaivasan, B Ashok - IEEE Access, 2023 - ieeexplore.ieee.org
In recent years, electric vehicles (EVs) have attracted a lot of attention and are rapidly
growing trends today due to their ability to compete with and overtake fossil fuel-powered …

T–S fuzzy model predictive speed control of electrical vehicles

MH Khooban, N Vafamand, T Niknam - ISA transactions, 2016 - Elsevier
This paper proposes a novel nonlinear model predictive controller (MPC) in terms of linear
matrix inequalities (LMIs). The proposed MPC is based on Takagi–Sugeno (TS) fuzzy …

Electric vehicle power propulsion system control based on time-varying fractional calculus: Implementation and experimental results

MH Khooban, M Gheisarnejad… - IEEE Transactions …, 2019 - ieeexplore.ieee.org
Nowadays, due to the fact that motor efficiency is strictly related to the diminution of
emissions, researchers pay much attention to find a robust and efficient motor control …

Wavelet neural learning-based type-2 fuzzy PID controller for speed regulation in BLDC motor

A Karuppannan, M Muthusamy - Neural Computing and Applications, 2021 - Springer
In brushless direct current (BLDC) motors, speed control is a prominent operation based on
which these motors are widely used in higher-end industrial applications including robotics …

Energy efficient torque allocation design emphasis on payload in a light-duty distributed drive electric vehicle

P Barman, B Azzopardi - IEEE Access, 2021 - ieeexplore.ieee.org
Light-Duty Electric Vehicle (LDEV) with a distributed drive powertrain provides several
potential advantages in terms of flexibility, controllability and responsiveness over …

Research on an equal power allocation electronic differential system for electric vehicle with dual-wheeled-motor front drive based on a wavelet controller

X Zhao, Q Yu, M Yu, Z Tang - Advances in Mechanical …, 2018 - journals.sagepub.com
We propose an electronic differential system (EDS) based on a wavelet controller for electric
vehicle with dual-wheeled-motor front drive. According to an analysis of current electronic …

[HTML][HTML] Numerical implementation of wavelet and fuzzy transform IFOC for three-phase induction motor

S Padmanaban, FD JL, F Blaabjerg, N Mir-Nasiri… - … science and technology …, 2016 - Elsevier
This article elaborates the numerical implementation of a novel, indirect field-oriented
control (IFOC) for induction motor drive by wave-let discrete transform/fuzzy logic interface …

Real-time Processor-in-Loop investigation of a modified non-linear state observer using sliding modes for speed sensorless induction motor drive in electric vehicles

M Krishna Srinivasan, F Daya John Lionel… - Energies, 2020 - mdpi.com
Tracking performance and stability play a major role in observer design for speed estimation
purpose in motor drives used in vehicles. It is all the more prevalent at lower speed ranges …

Real-time analysis of a modified state observer for sensorless induction motor drive used in electric vehicle applications

M Krishna S, F Daya JL, S Padmanaban, L Mihet-Popa - Energies, 2017 - mdpi.com
The purpose of this work is to present an adaptive sliding mode Luenberger state observer
with improved disturbance rejection capability and better tracking performance under …