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Titlebook: Electrical Machines and Drives; Fundamentals and Adv Jan A. Melkebeek Book 2018 Springer International Publishing AG 2018 Electrical machin

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The Induction Machineue, equivalent circuits and equations for an induction machine, the current locus and single-phase induction machines. Much attention is paid to per-unit values and scaling laws as these determine the behaviour of the machine to a great extent.
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Constant Frequency Voltage Supply of Rotating Field Machinesion below is therefore also important for synchronous machines which are not too large. In the next section, speed control and cascade connections for slip-ring induction motors are reviewed. Other sections discuss the behaviour of rotating field machines at voltage variations and power-electronic v
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1612-1287 on is paidto PWM techniques for inverters and the resulting harmonic content in the output waveform. In the third part, electrical drives are discussed, combining the traditional (rotating field and DC commutat978-3-319-89203-0978-3-319-72730-1Series ISSN 1612-1287 Series E-ISSN 1860-4676
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Transformersivalent circuits are derived starting from the basic laws of Maxwell and discussed in detail. As such, the construction of transformers is also treated in some detail. Attention is also paid to numerous applications.
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Direct Current Commutator Machinesnciples for energy conversion are similar to those of other machines. Moreover, their excellent control properties (e.g. speed control, torque control) are the inspiration for modern drive control schemes for rotating field machines. Starting from the basic electromagnetic laws, the electromagnetic
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Rotating Field Machines: mmf, emf and Torques in the previous chapters, we start again from the basic electromagnetic laws. Both using a graphical depiction and a more mathematical method the rotating field generation is explained. Next, the emf is discussed. Finally, the torque on a (rotating) current layer in a (rotating) field is discussed
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