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dc.contributor.authorManinder, Singh-
dc.date.accessioned2018-12-15T03:41:50Z-
dc.date.available2018-12-15T03:41:50Z-
dc.date.issued2016-
dc.identifier.urihttp://item.bettergrids.org/handle/1001/456-
dc.description.abstractNo-load startup of a 50HP (37.3 kVa) Induction Motor Effect of single-cage, double-cage and wound-rotor motor design types. 1-squirrel-cage rotor type: Typical low cost industrial motor. A second breaker is mechanically interlocked to prevent the induction motor to run on a floating bus. it has no effect on simulation as it is kept open during startup. 2-squirrel-cage rotor type Industrial motor with improved torque-speed characterstics. Also includes deep-bar rotor. Wound-rotor type: Startup resistors are inserted in the rotor to reduce startup currents Rotor access is also used for variable-speed wind turbine generator.en_US
dc.publisherOPAL-RT Technologiesen_US
dc.titleComparison of Induction Motor Startup with Different Rotor Designs (Available in Hypersim)en_US
dc.typeGrid Model Dataseten_US
grid.versionV1.0en_US
grid.publisher.urlhttps://www.opal-rt.com/systems-hypersim/en_US
grid.formatJPEGen_US
grid.buses0en_US
grid.generators0en_US
grid.loads0en_US
grid.feeders0en_US
grid.switches0en_US
grid.nodes0en_US
grid.formatversionHypersimen_US
grid.voltages0en_US
grid.climateZones0en_US
grid.branches0en_US
grid.identifier.urlhttps://www.opal-rt.com/support-knowledge-base/?article=AA-01459-
Appears in Collections:Transmission Dynamic

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Model Schematic89.34 kBJPEG


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