Efficiency-optimal operating conditions for single-phase induction motors

The double-revolving field model is used to determine theoretically efficiencyoptimal operating conditions for single-phase induction motors equipped with an auxiliary winding. The algorithm developed determines the optimal values of main winding current, auxiliary winding current and stator freq...

Full description

Bibliographic Details
Main Author: Cummings, Gerald Floyd
Format: Others
Language:English
Published: 2009
Online Access:http://hdl.handle.net/2429/3643
id ndltd-UBC-oai-circle.library.ubc.ca-2429-3643
record_format oai_dc
spelling ndltd-UBC-oai-circle.library.ubc.ca-2429-36432018-01-05T17:31:32Z Efficiency-optimal operating conditions for single-phase induction motors Cummings, Gerald Floyd The double-revolving field model is used to determine theoretically efficiencyoptimal operating conditions for single-phase induction motors equipped with an auxiliary winding. The algorithm developed determines the optimal values of main winding current, auxiliary winding current and stator frequency for any desired combination of torque and rotor speed within the motor's ratings. Computer simulations are presented to validate theoretical results and relate optimal terminal voltages to computed winding currents. Experimental measurements made on a 2 pole, 1 hp, 230V submersible motor are compared with computer simulations. These measurements reveal that while it is most important to control core losses by matching the V/Hz ratio to the load, it is possible to make further efficiency improvements by exciting the auxiliary winding. Applied Science, Faculty of Electrical and Computer Engineering, Department of Graduate 2009-01-14T19:54:44Z 2009-01-14T19:54:44Z 1995 1995-05 Text Thesis/Dissertation http://hdl.handle.net/2429/3643 eng For non-commercial purposes only, such as research, private study and education. Additional conditions apply, see Terms of Use https://open.library.ubc.ca/terms_of_use. 2441395 bytes application/pdf
collection NDLTD
language English
format Others
sources NDLTD
description The double-revolving field model is used to determine theoretically efficiencyoptimal operating conditions for single-phase induction motors equipped with an auxiliary winding. The algorithm developed determines the optimal values of main winding current, auxiliary winding current and stator frequency for any desired combination of torque and rotor speed within the motor's ratings. Computer simulations are presented to validate theoretical results and relate optimal terminal voltages to computed winding currents. Experimental measurements made on a 2 pole, 1 hp, 230V submersible motor are compared with computer simulations. These measurements reveal that while it is most important to control core losses by matching the V/Hz ratio to the load, it is possible to make further efficiency improvements by exciting the auxiliary winding. === Applied Science, Faculty of === Electrical and Computer Engineering, Department of === Graduate
author Cummings, Gerald Floyd
spellingShingle Cummings, Gerald Floyd
Efficiency-optimal operating conditions for single-phase induction motors
author_facet Cummings, Gerald Floyd
author_sort Cummings, Gerald Floyd
title Efficiency-optimal operating conditions for single-phase induction motors
title_short Efficiency-optimal operating conditions for single-phase induction motors
title_full Efficiency-optimal operating conditions for single-phase induction motors
title_fullStr Efficiency-optimal operating conditions for single-phase induction motors
title_full_unstemmed Efficiency-optimal operating conditions for single-phase induction motors
title_sort efficiency-optimal operating conditions for single-phase induction motors
publishDate 2009
url http://hdl.handle.net/2429/3643
work_keys_str_mv AT cummingsgeraldfloyd efficiencyoptimaloperatingconditionsforsinglephaseinductionmotors
_version_ 1718586550331113472