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Issue title: Proceedings from the 17th International Symposium on Applied Electromagnetics and Mechanics (ISEM 2015)
Guest editors: Fumio Kojima, Futoshi Kobayashi and Hiroyuki Nakamoto
Article type: Research Article
Authors: Hong, Do-Kwan* | Joo, Dae-Suk | Lee, Ji-Young | Woo, Byung-Chul
Affiliations: Korea Electrotechnology Research Institute, Changwon, Korea
Correspondence: [*] Corresponding author: Do-Kwan Hong, Korea Electrotechnology Research Institute, 51543 Changwon, Korea. E-mail:dkhong@keri.re.kr
Abstract: The integrated motor propulsor (IMP) is a new unmanned underwater vehicle (UUV) propulsion apparatus. The IMP consists of a rim-driven motor, a fluid hydrodynamic bearing, and a propulsor. KERI (Korea Electrotechnology Research Institute) is developing a surface permanent magnet (SPM) type of synchronous motor and a PWM-driven inverter. This system operates at a power density of 50HP (37 kW) at 1,000 rpm and is intended to fit the IMP system. The optimum design of the PMSM for the IMP has been developed successfully considering the pole-slot combination, electric performance, and the noise and vibration characteristics using multi-physics analyses and statistical design of experiments (DOE). A back-to-back performance test rig was proposed and considered for operation in a water tank. The acoustic field in a water tank of an optimum model was compared with that in an air condition considering the FSI (fluid structure interaction) dynamics.
Keywords: Integrated motor propulsor (IMP), unmanned underwater vehicle (UUV), multi-physics analysis, design of experiments (DOE), coupled, analysis, magnetic-forced vibration-acoustic analysis, response surface, methodology (RSM)
DOI: 10.3233/JAE-162162
Journal: International Journal of Applied Electromagnetics and Mechanics, vol. 52, no. 3-4, pp. 1689-1695, 2016
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