Галерея 2436714

Галерея 2436714




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Галерея 2436714
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Influence of Slot Opening Designs on Cogging Torque and Torque Ripple Under Different Loads
Comparison of Design Tradeoffs Under Different Load Conditions
Abstract: Owing to different magnetic saturation conditions in surface-mounted permanent magnet machines operating under different loads, the optimal design to minimize the cogging... View more
Owing to different magnetic saturation conditions in surface-mounted permanent magnet machines operating under different loads, the optimal design to minimize the cogging torque may not be the one to minimize torque ripple as well. This paper investigates the design tradeoff between the open-circuit cogging torque and the on-load torque ripple by taking the design of slot opening as an example. With the aid of the frozen permeability method, first, the torque components under different slot opening widths and load conditions are presented based on a 12-slot/8-pole machine. The result reveals that the on-load cogging increases significantly, especially when a small slot opening width is adopted, which is opposite to the condition for minimizing the open-circuit cogging torque. Then, two machines separately designed for minimum open-circuit cogging torque or minimum on-load torque ripple are compared to illustrate alternative design tradeoffs. Finally, a prototype machine is manufactured and tested to validate the analysis results.
Published in: IEEE Transactions on Magnetics ( Volume: 51 , Issue: 11 , November 2015 )
References is not available for this document.

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The surface-mounted permanent magnet (SPM) machines with fractional slot concentrated non-overlapping windings are widely adopted due to their high torque and power densities, short end-winding, high efficiency, and good fault tolerant capability [1]. During the design of SPM machines, cogging torque and torque ripples are normally the main considerations in addition to torque density.
IEEE Transactions on Plasma Science
2015 IEEE International Conference on Applied Superconductivity and Electromagnetic Devices (ASEMD)
A not-for-profit organization, IEEE is the world's largest technical professional organization dedicated to advancing technology for the benefit of humanity.
© Copyright 2023 IEEE - All rights reserved.

A not-for-profit organization, IEEE is the world's largest technical professional organization dedicated to advancing technology for the benefit of humanity. © Copyright 2023 IEEE - All rights reserved. Use of this web site signifies your agreement to the terms and conditions.





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This unique, one-of-a-kind, rare find custom home located in the convenient and highly desirable 89117 zip code exudes old world Mediterranean charm! It is situated in the rear of a cul de sac on an elevated, oversized, 1/2 acre + lot. Upon arrival, you will notice its stately presence with a side loading 3 car garage, enormous driveway to accommodate an RV, many vehicles and many other toys. The front of the property is gated, meticulously landscaped and is low maintenance. The backyard oasis features a pool/spa combo, tons of additional space, two covered More...

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Address: 2771 S Buffalo Dr, Las Vegas, NV 89117
Construction Materials: Frame, Stucco
Parking Features: Attached, FinishedGarage, Garage, Garage Door Opener, Inside Entrance
Interior Features: Window Treatments
Appliances: Built-In Electric Oven, Dryer, Gas Cooktop, Disposal, Microwave, Refrigerator, Washer
Fireplace Features: Family Room, Gas, Living Room
Laundry: Electric Dryer Hookup, Gas Dryer Hookup, Main Level, Laundry Room
Exterior Features: Balcony, Porch, Patio, Private Yard, Shed, Sprinkler/Irrigation
Patio And Porch: Balcony, Covered, Enclosed, Patio, Porch
Pool: Gas Heat, In Ground, Private, Pool/Spa Combo
Green Energy Efficient: SolarPanels
Other Structures: Greenhouse, Shed(s)
Cooling: Central Air, Electric, 2 Units
Heating: Gas, Multiple Heating Units

Lot Size:
0.51 Acres / 22,216 Sq. Ft.

Lot Features: 1/4 to 1 Acre Lot, DripIrrigationBubblers, DesertLandscaping, Landscaped, Rocks
Utilities: Cable Available, Underground Utilities
Electric: Photovoltaics Seller Owned
Directions: From Sahara & Buffalo, South on Buffalo. Right into cul de sac to 2771.
Terms: Cash, Conventional, FHA, VALoan
2771 S Buffalo Dr Las Vegas, NV 89117
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For Sale: 2771 S Buffalo Dr Las Vegas NV 89117 $886,000


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All Books Conferences Courses Journals & Magazines Standards Authors Citations
Influence of Slot Opening Designs on Cogging Torque and Torque Ripple Under Different Loads
Comparison of Design Tradeoffs Under Different Load Conditions
Abstract: Owing to different magnetic saturation conditions in surface-mounted permanent magnet machines operating under different loads, the optimal design to minimize the cogging... View more
Owing to different magnetic saturation conditions in surface-mounted permanent magnet machines operating under different loads, the optimal design to minimize the cogging torque may not be the one to minimize torque ripple as well. This paper investigates the design tradeoff between the open-circuit cogging torque and the on-load torque ripple by taking the design of slot opening as an example. With the aid of the frozen permeability method, first, the torque components under different slot opening widths and load conditions are presented based on a 12-slot/8-pole machine. The result reveals that the on-load cogging increases significantly, especially when a small slot opening width is adopted, which is opposite to the condition for minimizing the open-circuit cogging torque. Then, two machines separately designed for minimum open-circuit cogging torque or minimum on-load torque ripple are compared to illustrate alternative design tradeoffs. Finally, a prototype machine is manufactured and tested to validate the analysis results.
Published in: IEEE Transactions on Magnetics ( Volume: 51 , Issue: 11 , November 2015 )
References is not available for this document.

IEEE Account

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Purchase Details

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View Purchased Documents



Need Help?

US & Canada: +1 800 678 4333
Worldwide: +1 732 981 0060

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Scheduled Maintenance: On Friday, March 10, IEEE Xplore will undergo scheduled maintenance from 7:00 AM-7:00 PM ET (noon-midnight UTC). During this time, there may be intermittent impact on performance. We apologize for any inconvenience.
The surface-mounted permanent magnet (SPM) machines with fractional slot concentrated non-overlapping windings are widely adopted due to their high torque and power densities, short end-winding, high efficiency, and good fault tolerant capability [1]. During the design of SPM machines, cogging torque and torque ripples are normally the main considerations in addition to torque density.
IEEE Transactions on Plasma Science
2015 IEEE International Conference on Applied Superconductivity and Electromagnetic Devices (ASEMD)
A not-for-profit organization, IEEE is the world's largest technical professional organization dedicated to advancing technology for the benefit of humanity.
© Copyright 2023 IEEE - All rights reserved.

A not-for-profit organization, IEEE is the world's largest technical professional organization dedicated to advancing technology for the benefit of humanity. © Copyright 2023 IEEE - All rights reserved. Use of this web site signifies your agreement to the terms and conditions.


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