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Energies 2017,10, 1217
5.8.AxialFlux IronlessPermanentMagnetMotor
Accordingto [70], thismotor is themostadvancedonetobeused inEVs. Ithasanouter rotor
withnoslot; useof iron is avoidedhereaswell. Thestator core is absent too, reducing theweight
of themachine. Theairgaphere is radialfield type,providingbetterpowerdensity. Thismotor is
avariablespeedonetoo.Onenoteworthyadvantageof thismachine is that therotorscanbefitted
onlateral sidesofwheels,placingthestatorwindingsontheaxlecentrally. Theslot-lessdesignalso
improves theefficiencybyminimizingcopper lossas there ismorespaceavailable [70].
Powercomparisonof threedifferentmotor types is conducted inTable15. Table16compares
torquedensitiesof threemotors. Table17summarizes theadvantagesanddisadvantagesofdifferent
motor types,andshowssomevehiclesusingdifferentmotor technologies.
Table15.Powercomparisonofdifferentmotorshavingthesamesize.Data from[72].
MotorType Power (kW)
BaseSpeed MaximumSpeed
HEV BEV
IM 57 93 3000 12,000
SRM 42 77 2000 12,000
BLDC 75 110 4000 9000
Table16.Typical torquedensityvaluesofsomemotors.Data from[30].
MotorType Torque/Volume(Nm/m3) Torque/CuMass (Nm/kgCu)
PMmotor 28,860 28.7–48
IM 4170 6.6
SRM 6780 6.1
Table17.Advantages,disadvantagesandusageofdifferentmotor types.
MotorType Advantage Disadvantage VehiclesUsedIn
BrushedDCMotor • Maximumtorqueat lowspeed • Bulkystructure
• Lowefficiency
• Heatgeneration
atbrushes FiatPandaElettra (Series
DCmotor),Conceptor
G-Van(Separately
excitedDCmotor)
PermanentMagnet
BrushlessDCMotor
(BLDC) • Norotorcopper loss
• Moreefficiency than inductionmotors
• Lighter
• Smaller
• Betterheatdissipation
• Morereliability
• Moretorquedensity
• Morespecificpower • Shortconstant
powerrange
• Decreasedtorque
with increase
inspeed
• Highcostbecause
ofPM ToyotaPrius (2005)
PermanentMagnet
SynchronousMotor
(PMSM) • Operable indifferentspeedranges
withoutusinggearsystems
• Efficient
• Compact
• Suitable for in-wheelapplication
• Hightorqueevenatvery lowspeeds • Hugeiron lossat
highspeedsduring
in-wheeloperation ToyotaPrius,Nissan
Leaf,SoulEV
InductionMotor
(IM) • Themostmaturecommutatorless
motordrivesystem
• Canbeoperated likeaseparately
excitedDCmotorbyemployingfield
orientationcontrol TeslaModelS,Tesla
ModelX,ToyotaRAV4,
GMEV1
33
Emerging Technologies for Electric and Hybrid Vehicles
- Titel
- Emerging Technologies for Electric and Hybrid Vehicles
- Herausgeber
- MDPI
- Ort
- Basel
- Datum
- 2017
- Sprache
- englisch
- Lizenz
- CC BY-NC-ND 4.0
- ISBN
- 978-3-03897-191-7
- Abmessungen
- 17.0 x 24.4 cm
- Seiten
- 376
- Schlagwörter
- electric vehicle, plug-in hybrid electric vehicle (PHEV), energy sources, energy management strategy, energy-storage system, charging technologies, control algorithms, battery, operating scenario, wireless power transfer (WPT)
- Kategorie
- Technik