Javascript must be enabled to continue!
Development of an Intelligent Regenerative Braking Control Strategy for Electric Vehicles using MATLAB/Simulink
View through CrossRef
This paper introduces a detailed MATLAB/Simulink model for simulating a regenerative braking system in an Electric Vehicle (EV). Regenerative braking is a big plus for EVs because it converts the vehicles kinetic energy during slowing down into electrical energy, when is then sent back to the battery. This improves the vehicle’s energy efficiency and increases how far it can go in single charge. The simulation model includes important parts of the regenerative braking system such as the vehicle’s movement, the electric hub motor, battery, and control system that switches between regenerative and mechanical braking. Different ways of controlling how braking force are shared between regenerative and friction brakes is studied. The results of the simulation show how well the model can capture the energy recovery process under various driving situations, like different slowing rates and vehicle speeds. This focus is particularly relevant to the development of affordable and sustainable transport solutions, such as the retro-fit hybrid E-bike, where an existing Internal Combustion (I.C.) engine motorcycle is converted by adding an electric motor and battery system. The study also looks at how different control strategies for regenerative braking affect energy recovery and overall braking performance. This research offers useful information for designing and improving regenerative braking systems in EVs, which helps in making transportation more energy-efficient and eco-friendly.
Title: Development of an Intelligent Regenerative Braking Control Strategy for Electric Vehicles using MATLAB/Simulink
Description:
This paper introduces a detailed MATLAB/Simulink model for simulating a regenerative braking system in an Electric Vehicle (EV).
Regenerative braking is a big plus for EVs because it converts the vehicles kinetic energy during slowing down into electrical energy, when is then sent back to the battery.
This improves the vehicle’s energy efficiency and increases how far it can go in single charge.
The simulation model includes important parts of the regenerative braking system such as the vehicle’s movement, the electric hub motor, battery, and control system that switches between regenerative and mechanical braking.
Different ways of controlling how braking force are shared between regenerative and friction brakes is studied.
The results of the simulation show how well the model can capture the energy recovery process under various driving situations, like different slowing rates and vehicle speeds.
This focus is particularly relevant to the development of affordable and sustainable transport solutions, such as the retro-fit hybrid E-bike, where an existing Internal Combustion (I.
C.
) engine motorcycle is converted by adding an electric motor and battery system.
The study also looks at how different control strategies for regenerative braking affect energy recovery and overall braking performance.
This research offers useful information for designing and improving regenerative braking systems in EVs, which helps in making transportation more energy-efficient and eco-friendly.
Related Results
Redundant Brake Boost Control Strategy of Integrated
Electro-hydraulic Braking System
Redundant Brake Boost Control Strategy of Integrated
Electro-hydraulic Braking System
<div class="section abstract"><div class="htmlview paragraph">The traditional braking system has been unable to meet the redundant safety
requiremen...
A Review of Regenerative Braking Methods for Induction Motors in Electric Propulsion System
A Review of Regenerative Braking Methods for Induction Motors in Electric Propulsion System
This paper provides a comprehensive review of regenerative braking methods for induction motors utilized in electric propulsion systems. Regenerative braking is a crucial technolog...
Improving the regenerative braking system of a mild hybrid vehicle
Improving the regenerative braking system of a mild hybrid vehicle
Problem. Mild hybrid vehicles are a good compromise in terms of price-quality ratio among hybrid vehicles. To reduce the cost and weight, as well as to increase the efficiency of r...
Intelligent Coordination of Collision Avoidance and Composite Anti-Lock Braking Systems for Stability Enhancement and Regenerative Energy Optimization in Electric Vehicles
Intelligent Coordination of Collision Avoidance and Composite Anti-Lock Braking Systems for Stability Enhancement and Regenerative Energy Optimization in Electric Vehicles
This study introduces an intelligent coordination framework which combines a Collision Avoidance System (CAS), Composite Anti-Lock Braking System (CABS), Vehicle Stability Control ...
Detailed Analysis of Regenerative Energy when the Electric Bus Driving on Expressways
Detailed Analysis of Regenerative Energy when the Electric Bus Driving on Expressways
Electric vehicles have many advantages over traditional ICE (internal combustion engine) vehicles, such as zero emissions, noise and vibration reduction, and excellent acceleration...
Long Downhill Braking and Energy Recovery of Pure Electric Commercial Vehicles
Long Downhill Braking and Energy Recovery of Pure Electric Commercial Vehicles
The thermal degradation of brakes has a significant impact on the stability of pure electric commercial vehicles during long downhill braking. Based on road slope and using fuzzy c...
Study of the influence of the technical level of railway vehicles on braking characteristics
Study of the influence of the technical level of railway vehicles on braking characteristics
In the article, the traction transmission of modern STADLER KISS trains is studied. The study of the effect of the technical level of the traction transmission on the braking chara...
Electric motorcycles as a sustainable transportation solution: the potential of regenerative braking systems in Vietnam
Electric motorcycles as a sustainable transportation solution: the potential of regenerative braking systems in Vietnam
Electric motorcycles are gradually emerging as a sustainable transportation solution, offering environmental benefits and enhanced operational efficiency, particularly in Vietnam -...

