This paper proposes a new electrically controlled magnetic variable-speed gearing (EC-MVSG) machine, which is capable of providing controllable gear ratios for hybrid electric vehicle (HEV) applications. The key design feature involves the adoption of a magnetic gearing structure and acceptance of the memory machine flux-mnemonic concept. Hence, the proposed machine can not only offer a gear-shifting mechanism for torque and speed transmission, but also provide variable gear ratios for torque and speed variation. The electromagnetic design is studied and discussed. The finite-element method is developed with the hysteresis model to verify the validity of the machine design
A dynamic propulsion system using variable torque/speed characteristics, designed to realize a machi...
This chapter briefly explains the advantage of using magnetic gears (MGs) for transportation applica...
This article proposes a novel hub motor, which uses variable electromagnetic (EM) gearing to leverag...
This paper presents an innovative electronic magnetic geared (EMG) motor. The motor is designed and ...
This study presents the design of a new non-rare-earth magnetic variable gear (MVG) with 16 electric...
This chapter briefly explains the advantage of using magnetic gears (MGs) for transportation applica...
This paper proposes a new electronic-continuously variable transmission (E-CVT) system for power-spl...
As symbolized in many logos, mechanical gears have significant impact on daily life and industrial m...
The design procedure of a magnetic gear transmission (MaGT) suitable for high-speed electric propuls...
A novel high-speed electric propulsion system for automotive applications is presented in this paper...
This study proposes a new type of magnetic gear, namely, the electromechanical integrated magnetic g...
Abstract In this paper the magnetic geared machines electromagnetic concepts are introduced. The mag...
In this paper the magnetic geared machines electromagnetic concepts are introduced. The magnetic gea...
This paper presents the analysis and mechanical design of a 15.9kW magnetic gear (MG) with a 12.4:1 ...
This paper presents a literature review on magnetic gears, highlighting the advantages of using thes...
A dynamic propulsion system using variable torque/speed characteristics, designed to realize a machi...
This chapter briefly explains the advantage of using magnetic gears (MGs) for transportation applica...
This article proposes a novel hub motor, which uses variable electromagnetic (EM) gearing to leverag...
This paper presents an innovative electronic magnetic geared (EMG) motor. The motor is designed and ...
This study presents the design of a new non-rare-earth magnetic variable gear (MVG) with 16 electric...
This chapter briefly explains the advantage of using magnetic gears (MGs) for transportation applica...
This paper proposes a new electronic-continuously variable transmission (E-CVT) system for power-spl...
As symbolized in many logos, mechanical gears have significant impact on daily life and industrial m...
The design procedure of a magnetic gear transmission (MaGT) suitable for high-speed electric propuls...
A novel high-speed electric propulsion system for automotive applications is presented in this paper...
This study proposes a new type of magnetic gear, namely, the electromechanical integrated magnetic g...
Abstract In this paper the magnetic geared machines electromagnetic concepts are introduced. The mag...
In this paper the magnetic geared machines electromagnetic concepts are introduced. The magnetic gea...
This paper presents the analysis and mechanical design of a 15.9kW magnetic gear (MG) with a 12.4:1 ...
This paper presents a literature review on magnetic gears, highlighting the advantages of using thes...
A dynamic propulsion system using variable torque/speed characteristics, designed to realize a machi...
This chapter briefly explains the advantage of using magnetic gears (MGs) for transportation applica...
This article proposes a novel hub motor, which uses variable electromagnetic (EM) gearing to leverag...