LAUSR.org creates dashboard-style pages of related content for over 1.5 million academic articles. Sign Up to like articles & get recommendations!

Electromagnetic Performance Analysis of a New Hybrid Excitation Synchronous Machine for Electric Vehicle Applications

Photo by robertbye from unsplash

In this paper, a new hybrid excitation synchronous machine (HESM) with dual-end built-in field windings is designed for electric vehicle traction applications with consideration of electromagnetic performance. This HESM topology… Click to show full abstract

In this paper, a new hybrid excitation synchronous machine (HESM) with dual-end built-in field windings is designed for electric vehicle traction applications with consideration of electromagnetic performance. This HESM topology inherits the features of brushless HESMs with magnetic shunting rotor and benefits from better space utilization. The fundamental structure and operating principle of the HESM are introduced in detail. The electromagnetic performance of the HESM, including back-electromotive force waveform, cogging torque, torque ripple, no-load flux regulation capability, and output torque capability, is analyzed by the 3-D finite-element method. The predicted results reveal that the output torque ripple of the HESM can be optimized by the coordinated operation between field current and armature current. A 100 kW prototype HESM has been designed and manufactured for experimental verification. The advantages and feasibility of the HESM in EV traction applications are validated by the test results.

Keywords: hesm; new hybrid; electromagnetic performance; hybrid excitation; excitation synchronous

Journal Title: IEEE Transactions on Magnetics
Year Published: 2018

Link to full text (if available)


Share on Social Media:                               Sign Up to like & get
recommendations!

Related content

More Information              News              Social Media              Video              Recommended



                Click one of the above tabs to view related content.