Electric Machines: Analysis and Design Applying Matlab
This text contains sufficient material for a single semester core course in electric machines and energy conversion, while allowing some selectivity among the topics covered by the latter sections of Chapters 3-7 depending on a school's curriculum. The text can work for either a course in energy design principles and analysis with an optional design project, or for a capstone design course that follows an introductory course in energy device principles. A unique feature of "Electric Machines: Analysis and Design Applying MATLAB" is its integration of the popular interactive computer software MATLAB to handle the tedious calculations arising in electric machine analysis. As a result, more exact models of devices can be retained for analysis rather than the approximate models commonly introduced for the sake of computational simplicity.
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air gap flux air gap mmf analysis armature armature reaction autotransformer average power B-field blanks(8 calculated circuit of Fig coil current component conductor constant cooling core losses current density dc machine dc motor diameter dimensions disp displays efficiency equivalent circuit equivalent circuit parameters Example excitation ferromagnetic ferromagnetic material field current field winding Figure flux density Fourier spectrum frequency full-load grid harmonic i=l:npts impedance increase induction motor lagging leakage flux leakage reactance line currents line voltage magnetic circuit magnetic field magnitude MATLAB program maximum mmf wave percent performance permeance phase voltage phase winding phasor diagram pitch plot power factor power flow rated voltage ratio reactive power resistance resulting rotor bar rotor coil rotor slot saturation sinusoidal specific stator coil stator slots stator winding synchronous machine synchronous motor synchronous speed terminal voltage three-phase torque-speed Total harmonic distortion transformer turboalternator typical waveform width