Abstract
Accurate modeling for the hybrid-excitation dual three-phase main machine (HEDTP-MM) in aircraft synchronous starter-generator system serves as the foundation for system analysis and control strategy research. Considering the complex hybrid-excitation characteristics of the HEDTP-MM and the requirement that both the stator and rotor windings can be directly interfaced with the external power circuit, the air gap flux characteristics generated by the permanent-magnet (PM) excitation is first analyzed based on the equivalent magnetic circuit method in this paper. Then, the PM excitation is converted into an equivalent field current, which enables a unified description of PM excitation and wound field (WF) excitation in the HEDTP-MM. Based on this equivalent field current of PM, a decoupled constant-parameter double-side voltage-behind reactance (VBR) model of the HEDTP-MM considering magnetic saturation is derived and established. This model enables the direct connection of stator and rotor windings to external circuits and maintains high modeling accuracy. Experimental results under steady-state and transient operating conditions verified the validity and accuracy of the proposed VBR model in this paper.
| Original language | English |
|---|---|
| Journal | IEEE Transactions on Energy Conversion |
| DOIs | |
| State | Accepted/In press - 2026 |
Keywords
- Aircraft Synchronous Starter-Generator
- Equivalent field current
- Hybrid-excitation Dual Three-Phase Main Ma chine
- VBR Model
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