Advanced Speed‐and‐current control approach for dynamic electric car modelling

Abstract Considering environmental conditions and reduced fuel availability, electric cars (ECs) play a vital role in many applications such as consumer cars and short‐distance transportation. This paper proposes a detailed dynamic modelling of battery, motor, and inverter developed for the design o...

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Bibliographic Details
Main Authors: Buddhadeva Sahoo, Sangram Keshari Routray, Pravat Kumar Rout
Format: Article
Language:English
Published: Hindawi-IET 2021-09-01
Series:IET Electrical Systems in Transportation
Online Access:https://doi.org/10.1049/els2.12015
Description
Summary:Abstract Considering environmental conditions and reduced fuel availability, electric cars (ECs) play a vital role in many applications such as consumer cars and short‐distance transportation. This paper proposes a detailed dynamic modelling of battery, motor, and inverter developed for the design of an EC. In addition, an improved controller is developed with a different geometrical method using the sensitivity gain of the current sensor and tachometer to assure the optimal performance of the EC. For achieving linear vehicle operation and improved stability, a system transfer function model is designed by considering various uncertainties such as force acting on the car, wheel, road, and wind speed conditions. To offer better regulation and excellent tracking operation of the EC, a combined proportional–integral–derivative controller‐based outer‐speed and inner‐current control approach is suggested to regulate the nonlinear parameters for different driving profile applications. The proposed designed control approach and system model are tested using two input conditions such as step and driving profile inputs through MATLAB/Simulink software, and performance is analysed through various open‐loop and closed‐loop test scenarios.
ISSN:2042-9738
2042-9746