Stator tooth shape optimization for double salient hybrid excitation generator based on asymmetric circuit analysis
ISSN: 0332-1649
Article publication date: 24 July 2019
Issue publication date: 15 November 2019
Abstract
Purpose
This paper aims to clarify the relationship between stator tooth shape and DC voltage fluctuation of a double salient hybrid excitation generator (DSHEG). It analyzes the asymmetrical characteristics of the magnetic circuit and inductance between each phase. The study aims to reduce voltage fluctuation by using a stator shape optimization scheme, which helps reducing inductance difference.
Design/methodology/approach
This paper opted for a method combined with theoretical analysis, simulation and experimental verification. The stator tooth optimization scheme is given based on theoretical asymmetrical analysis and Taguchi method. A series of two-dimensional finite element analysis simulation of different conditions are conducted. Two prototypes with different stator tooth shape are made and experiments are carried out.
Findings
The paper provides empirical insights into how the stator tooth shape influences the asymmetry of inductance and DC voltage fluctuation. Compensation adjustments to the stator tooth shape can narrow the inductance differences of each phase. It suggests that “LTL” shaped DSHEG has lower voltage ripple than “III” shaped DSHEG without sacrificing output power.
Research limitations/implications
Because of the chosen research approach, the gap between magnets and stator and end effect are not considered. Errors exist between simulation and experimental results.
Practical implications
The paper includes implications for other “C” shaped tooth optimization. Study on phase asymmetry of the special machine can further improve quality testing and simplify control strategy.
Originality/value
This paper analyzes the asymmetry of DSHEG and proposes an optimized stator tooth shape to reduce DC voltage fluctuation.
Keywords
Citation
Yao, S. and Zhang, W. (2019), "Stator tooth shape optimization for double salient hybrid excitation generator based on asymmetric circuit analysis", COMPEL - The international journal for computation and mathematics in electrical and electronic engineering, Vol. 38 No. 6, pp. 1738-1755. https://doi.org/10.1108/COMPEL-09-2018-0344
Publisher
:Emerald Publishing Limited
Copyright © 2019, Emerald Publishing Limited