Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Design and optimisation of an In‐wheel switched reluctance motor for electric vehicles

View through CrossRef
To improve the mechanical performance of the In‐wheel switched reluctance motor (SRM) used in electric vehicles (EVs), structure design and geometrical multi‐objective optimisation strategy for the In‐wheel SRM were developed in this study. The design method for major parameters of the In‐wheel SRM was presented by means of design specifications of the EVs. According to requirements of the EVs, four indicators of the SRM were defined to evaluate the development of the SRM and perform the optimisation. To simultaneously improve the static performance of the SRM, a novel multi‐objective simultaneous optimisation function was proposed by using four weighted factors and considering sensitivity analysis of the design variables on indicators. A four‐phase 16/20 In‐wheel SRM with an outer rotor was designed and optimised based on the proposed multi‐objective optimisation method. The influence of design variables on average torque, torque ripple, efficiency, and torque density was analysed based on a combination of finite element analysis and orthogonal experiment design method. The static and dynamic torque performances of the optimised SRM were evaluated and compared with those of the initial motor. The comparison results showed that the proposed multi‐objective simultaneous optimisation strategy can greatly improve the static and dynamic torque performances of the SRM.
Title: Design and optimisation of an In‐wheel switched reluctance motor for electric vehicles
Description:
To improve the mechanical performance of the In‐wheel switched reluctance motor (SRM) used in electric vehicles (EVs), structure design and geometrical multi‐objective optimisation strategy for the In‐wheel SRM were developed in this study.
The design method for major parameters of the In‐wheel SRM was presented by means of design specifications of the EVs.
According to requirements of the EVs, four indicators of the SRM were defined to evaluate the development of the SRM and perform the optimisation.
To simultaneously improve the static performance of the SRM, a novel multi‐objective simultaneous optimisation function was proposed by using four weighted factors and considering sensitivity analysis of the design variables on indicators.
A four‐phase 16/20 In‐wheel SRM with an outer rotor was designed and optimised based on the proposed multi‐objective optimisation method.
The influence of design variables on average torque, torque ripple, efficiency, and torque density was analysed based on a combination of finite element analysis and orthogonal experiment design method.
The static and dynamic torque performances of the optimised SRM were evaluated and compared with those of the initial motor.
The comparison results showed that the proposed multi‐objective simultaneous optimisation strategy can greatly improve the static and dynamic torque performances of the SRM.

Related Results

The Use of Induction Motors in Electric Vehicles
The Use of Induction Motors in Electric Vehicles
Compared with internal combustion engine vehicles, the trend toward electric vehicles that do not pollute the air, are highly efficient, and require less maintenance is increasing....
KONSEP DESAIN KENDARAAN LISTRIK RODA TIGA RAMAH LINGKUNGAN
KONSEP DESAIN KENDARAAN LISTRIK RODA TIGA RAMAH LINGKUNGAN
Dalam penelitian  ini dirancang sebuah kendaraan listrik roda tiga dengan menggunakan metode VDI (Verein Duetscher Ingeniure). Perancangan kendaraan listrik ini terfokus pada desa...
Intelligent Speed Regulation Control of Switched Reluctance Motor of Electric Vehicle Based on Neural Network Parameter Identification
Intelligent Speed Regulation Control of Switched Reluctance Motor of Electric Vehicle Based on Neural Network Parameter Identification
Based on the analysis of the related theories of switched reluctance motor, this paper designs and implements the intelligent speed regulation system of switched reluctance motor f...
Analysis of Braking Performance of Distributed Drive Vehicle Under Two-Wheel Hub Motor Failure
Analysis of Braking Performance of Distributed Drive Vehicle Under Two-Wheel Hub Motor Failure
For distributed hub-driven vehicles, under braking conditions, when the hub motor fails, it will seriously threaten the safety of the vehicle, and there will be dangerous condition...
Design
Design
Conventional definitions of design rarely capture its reach into our everyday lives. The Design Council, for example, estimates that more than 2.5 million people use design-related...
Vibration analysis of running wheel for straddle monorail vehicles
Vibration analysis of running wheel for straddle monorail vehicles
Abstract This article is based on the tire six component force test and wheel hub fatigue test of a certain type of straddle monorail vehicle, and analyzes the reasons for ...
Will Russian resources “drive” electric vehicles? Part 1
Will Russian resources “drive” electric vehicles? Part 1
Introduction (problem statement and relevance). In recent years, electric vehicles sharply gained extra attention as an alternative to internal combustion engine (ICE) vehicles. Th...

Back to Top