Power Electronics: Circuits, Devices, and ApplicationsFor junior or senior undergraduate students in Electrical and Electronic Engineering. This text covers the basics of emerging areas in power electronics and a broad range of topics such as power switching devices, conversion methods, analysis and techniques, and applications. Its unique approach covers the characteristics of semiconductor devices first, then discusses the applications of these devices for power conversions. Four main applications are included: flexible ac transmissions (FACTs), static switches, power supplies, dc drives, and ac drives. - New chapters - Including Ch. 9, Multilevel Inverters, Ch. 13, Flexible AC Transmission Systems, and Ch. 17, Gate Drive Circuits.', gives students the latest information available on these topics. - New sections throughout - Including Semiconductor Basics, State-Space Analysis of Regulators, Vector Controls, Stepper Motor Control and more, gives students the latest information available on these topics. - Well-written and easy-to-follow, helps students maintain interest in the text. - Numerous worked-out examples, demonstrates for students the applications of conversion techniques in design and analysis of converter cir |
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المحتوى
Introduction | 1 |
Power Semiconductor Diodes and Circuits | 31 |
Diode Rectifiers | 68 |
حقوق النشر | |
19 من الأقسام الأخرى غير ظاهرة
طبعات أخرى - عرض جميع المقتطفات
Power Electronics: Circuits, Devices, and Applications <span dir=ltr>M. H. Rashid</span> لا تتوفر معاينة - 2004 |
عبارات ومصطلحات مألوفة
applications armature Assuming base becomes capacitance capacitor characteristics charge circuit compensator component conduction connected constant continuous converter cycle dc-dc delay angle depends determine device diode drive effective Electronics energy equivalent circuit Example factor field filter Finding flow forward frequency function gate given gives harmonic IEEE increases inductance inductor input current input voltage instantaneous inverter limited load current loss maximum mode modulation MOSFET motor negative normally operation output voltage parameters peak phase Points positive Power Electronics Problem pulse ratio rectifier reduced reference regulator resistance resonant respectively result reverse ripple rotor shown in Figure shows signal single-phase Solution speed supply switching three-phase thyristor torque transformer transistor turn-off turn-on turned varied waveforms zero