A Novel DC-Coil-Free Hybrid-Excited Machine with Consequent-Pole PM Rotor

This paper proposes a new DC coil free hybrid excited machine concept, which has no external field windings. The technical novelty is the integration of field windings and armature windings. DC bias current is injected into the excitation and the field windings in the traditional hybrid excited mach...

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Main Authors: Qingsong Wang, Shuangxia Niu
Format: Article
Language:English
Published: MDPI AG 2018-03-01
Series:Energies
Subjects:
Online Access:http://www.mdpi.com/1996-1073/11/4/700
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spelling doaj-e471995d526a4770b095e3f24d84c6572020-11-24T22:59:59ZengMDPI AGEnergies1996-10732018-03-0111470010.3390/en11040700en11040700A Novel DC-Coil-Free Hybrid-Excited Machine with Consequent-Pole PM RotorQingsong Wang0Shuangxia Niu1Department of Electrical Engineering, The Hong Kong Polytechnic University, Hong Kong, ChinaDepartment of Electrical Engineering, The Hong Kong Polytechnic University, Hong Kong, ChinaThis paper proposes a new DC coil free hybrid excited machine concept, which has no external field windings. The technical novelty is the integration of field windings and armature windings. DC bias current is injected into the excitation and the field windings in the traditional hybrid excited machine are eliminated. Compared with traditional hybrid-excited machines with additional field windings, the proposed machine can realize a higher slot utilization ratio, hence achieve a higher torque density and a wider flux adjusting range. Another advantage of the proposed machine is that the voltage drop associated with flux regulation is small due to the small DC resistance, and the torque generating capability at the flux regulating region can be improved accordingly. The rotor is specifically designed with magnet-iron sequences and a consequent-pole, in which the permanent magnet and iron pole are alternatively employed. A bi-directional flux modulating effect can be achieved, which can contribute to the magnetic coupling in the air-gap. Analytical derivation is used to describe the operating principle, and the proposed machine was optimally designed using the Tabu search algorithm. A prototype was made, and its performances investigated through experimental tests.http://www.mdpi.com/1996-1073/11/4/700consequent-poleDC coil freehybrid-excitedmagnet-iron
collection DOAJ
language English
format Article
sources DOAJ
author Qingsong Wang
Shuangxia Niu
spellingShingle Qingsong Wang
Shuangxia Niu
A Novel DC-Coil-Free Hybrid-Excited Machine with Consequent-Pole PM Rotor
Energies
consequent-pole
DC coil free
hybrid-excited
magnet-iron
author_facet Qingsong Wang
Shuangxia Niu
author_sort Qingsong Wang
title A Novel DC-Coil-Free Hybrid-Excited Machine with Consequent-Pole PM Rotor
title_short A Novel DC-Coil-Free Hybrid-Excited Machine with Consequent-Pole PM Rotor
title_full A Novel DC-Coil-Free Hybrid-Excited Machine with Consequent-Pole PM Rotor
title_fullStr A Novel DC-Coil-Free Hybrid-Excited Machine with Consequent-Pole PM Rotor
title_full_unstemmed A Novel DC-Coil-Free Hybrid-Excited Machine with Consequent-Pole PM Rotor
title_sort novel dc-coil-free hybrid-excited machine with consequent-pole pm rotor
publisher MDPI AG
series Energies
issn 1996-1073
publishDate 2018-03-01
description This paper proposes a new DC coil free hybrid excited machine concept, which has no external field windings. The technical novelty is the integration of field windings and armature windings. DC bias current is injected into the excitation and the field windings in the traditional hybrid excited machine are eliminated. Compared with traditional hybrid-excited machines with additional field windings, the proposed machine can realize a higher slot utilization ratio, hence achieve a higher torque density and a wider flux adjusting range. Another advantage of the proposed machine is that the voltage drop associated with flux regulation is small due to the small DC resistance, and the torque generating capability at the flux regulating region can be improved accordingly. The rotor is specifically designed with magnet-iron sequences and a consequent-pole, in which the permanent magnet and iron pole are alternatively employed. A bi-directional flux modulating effect can be achieved, which can contribute to the magnetic coupling in the air-gap. Analytical derivation is used to describe the operating principle, and the proposed machine was optimally designed using the Tabu search algorithm. A prototype was made, and its performances investigated through experimental tests.
topic consequent-pole
DC coil free
hybrid-excited
magnet-iron
url http://www.mdpi.com/1996-1073/11/4/700
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