Estimation of Output Voltage for High Speed, Surface Permanent Magnet Generator with Large Air Gap Length
Akihiro Hoshino, Masayuki Morimoto, Nobuyuki Matsui
Abstract
Open-access reader
Akihiro Hoshino, Masayuki Morimoto, Nobuyuki Matsui
Abstract
Open-access reader
This paper presents a method to estimate the output voltage of a high speed, surface permanent magnet generator with large air gap length at design stage. The output voltage is estimated by the induced electromotive force and the synchronous inductance obtained from the analytical results of the flux linkage using FEM. Also, a method to classify the synchronous inductance per each causing factor is proposed. The air gap leakage inductance is not negligible in a large air gap machine like this generator. The validity of the proposed method has been proved by the measured values of a generator designed by this method, and also the measured values show that the output voltage of the generator is within the permissible range. The method propose in this paper will be an effective tool to design a high speed, surface permanent magnet generator with large air gap length.
OpenAlex reports 2 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
This paper presents a method to estimate the output voltage of a high speed, surface permanent magnet generator with large air gap length at design stage. The output voltage is estimated by the induced electromotive force and the synchronous inductance obtained from the analytical results of the flux linkage using FEM. Also, a method to classify the synchronous inductance per each causing factor is proposed. The air gap leakage inductance is not negligible in a large air gap machine like this generator. The validity of the proposed method has been proved by the measured values of a generator designed by this method, and also the measured values show that the output voltage of the generator is within the permissible range. The method propose in this paper will be an effective tool to design a high speed, surface permanent magnet generator with large air gap length.
Key concepts: Air gap (plumbing), Permanent magnet synchronous generator, Flux linkage, Inductance, Shunt generator, Magnet, Generator (circuit theory), Voltage