I = Using the 'single phase equivalent circuit' given below, the required parameters ir terms of motor parameters equations will be deducted. Equations separately for asynchronous motor powered by voltage source will be removed and the spaces given below will be written. V1 and 11 are the RMS value of the AC phase voltage and current. All formulas (3phase motor) will be written as a function of motor parameters and slip. Stator current Rotor current I2 = Pm = Shaft power Moment Tm = jx1 jx2 = V, 12 Yield jxm Thevenin emp. Zeh = Thevenin voltage Vth = T- Equivalent circuit
I = Using the 'single phase equivalent circuit' given below, the required parameters ir terms of motor parameters equations will be deducted. Equations separately for asynchronous motor powered by voltage source will be removed and the spaces given below will be written. V1 and 11 are the RMS value of the AC phase voltage and current. All formulas (3phase motor) will be written as a function of motor parameters and slip. Stator current Rotor current I2 = Pm = Shaft power Moment Tm = jx1 jx2 = V, 12 Yield jxm Thevenin emp. Zeh = Thevenin voltage Vth = T- Equivalent circuit
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
Problem 1P: Visit your local library (at school or home) and describe the extent to which it provides literature...
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Transcribed Image Text:I1 =
Using the 'single phase equivalent circuit' given below, the required parameters ir
terms of motor parameters equations will be deducted. Equations separately for
asynchronous motor powered by voltage source will be removed and the spaces
given below will be written. V1 and 11 are the RMS value of the AC phase voltage
and current. All formulas (3phase motor) will be written as a function of motor
Stator current
Rotor current
Iz =
Pm =
Shaft power
parameters and slip.
Moment
Tm =
jx1
jx2
Yield
V1
jxm
Thevenin emp.
Zth =
Thevenin voltage Vth
%3D
T- Equivalent circuit
Slip at maximum
moment point
Smax =
Max. moment
Tmax =
Maksimum yield
11 max
İnrush current
Iıstart=
(s=1 current)
İnrush monmenti
Tstart =
u
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