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Dive into the research topics where Yukio Inaguma is active.

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Featured researches published by Yukio Inaguma.


power conversion conference | 2007

High Performance Motor Drive Technologies for Hybrid Vehicles

Katsuhiro Asano; Yukio Inaguma; Hiroki Ohtani; Eiji Sato; Masaki Okamura; Shoichi Sasaki

In this paper, latest motor drive technologies used for hybrid vehicles (HV), which are high output motor control and variable voltage system, will be introduced. Authors have researched and developed motor drive technologies through development of hybrid vehicles, which has been put into practical use to production vehicle. The developed motor drive system has the features of high efficiency, high power/weight ratio, and low-cost.


ieee industry applications society annual meeting | 2005

A novel multi-functional converter system equipped with input voltage regulation and current ripple suppression

Kazunari Moriya; Hideo Nakai; Yukio Inaguma; Hiroki Ohtani; Shoichi Sasaki

This paper introduces a multi-functional converter system (MFCS) for HEVs, equipped with input voltage regulation and current ripple suppression. The MFCS consists of a motor, an inverter and a battery, and the battery connected to the neutral point of the motor. However, the basic type MFCS circuit have the advantage of omitting the DC/DC converter, it still needs an external inductor, or large current ripple arises, it causes loss, acoustic noise and vibration, and also has limitations in input voltage regulation range. To improve the MFCS, the two-motor type MFCS is proposed, the battery connected between the neutral points of two three-phase motors. When the two inverters are cooperated, the current ripple suppressed into 1/4.5 of the basic type. And it realizes wider input voltage regulation range than that of the basic type.


conference of the industrial electronics society | 2001

Development and testing of the torque control for the permanent-magnet synchronous motor

Hideo Nakai; Hiroki Ohtani; E. Satoh; Yukio Inaguma

The purpose of this study is to develop a control method that increases the torque and the efficiency at all rotor speeds more than the ordinary current error feedback method. The method is composed of two compensators is proposed to achieve this purpose. One of the compensator controls the torque using the phase of voltages. Another one is the ordinary current error feedback. The validity of the proposed method is confirmed in the simulation and experiment examinations.


Archive | 1998

Drive control equipment of ac motor

Yukio Inaguma; Hiroki Otani; Eiji Sato; 栄次 佐藤; 裕樹 大谷; 幸雄 稲熊


Archive | 2001

Driving apparatus, power output apparatus, and control method

Kazunari Moriya; Yukio Inaguma; Hideo Nakai; Hiroki Ohtani; Sumikazu Shamoto; Masayuki Komatsu; Shoichi Sasaki


Archive | 1998

Magnets containing-type alternating-current motor and method of designing the same

Tetsuya Miura; Yasutomo Kawabata; Yukio Inaguma; Toshinobu Arakawa


Archive | 2001

Mechanical power outputting apparatus and inverter apparatus

Shoichi Sasaki; Sumikazu Shamoto; Masayuki Komatsu; Kazunari Moriya; Hiroki Ohtani; Yukio Inaguma


Archive | 1998

Synchronous motor control system and method of controlling synchronous motor

Yasutomo Kawabata; Yoshiaki Taga; Shigeo Taga heir by; Takiko Taga heir by; Tomoyo Taga heiress by; Masatoshi Uchida; Akihiko Kanamori; Yukio Inaguma; Toshinobu Arakawa


Archive | 2001

Electric element control apparatus, battery system, and inverter motor system

Sumikazu Shamoto; Masayuki Komatsu; Shoichi Sasaki; Tetsuhiro Ishikawa; Yukio Inaguma; Kazunari Moriya; Hiroki Ohtani


Archive | 2006

Rotating electrical machine and hybrid drive unit provided with the same

Kazunari Moriya; Yukio Inaguma; Hiroo Fuma

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