Power Converter CircuitsCRC Press, 12 мар. 2004 г. - Всего страниц: 554 This text reveals all key components of rectification, inversion, cycloconversion, and conversion circuits. It authoritatively describes switching, voltage and current relationships, and converter properties, operation, control, and performance as utilized in most practical applications. Authored jointly by a veteran scholar and an accomplished researcher in the field Power Converter Circuits highlights methods grounded in classical mathematics and includes an abundance of numerical worked examples. Features hundreds of chapter-specific problems, with solutions provided separately at the end of the book |
Содержание
1 Switching and Semiconductor Switches | 1 |
2 SinglePhase Uncontrolled Rectifier Circuits | 12 |
3 SinglePhase Controlled Rectifier Circuits | 50 |
4 ThreePhase HalfWave Uncontrolled Diode Bridge Rectifier Circuits | 94 |
5 ThreePhase HalfWave Controlled Bridge Rectifier Circuits | 133 |
6 ThreePhase FullWave Uncontrolled Bridge Rectifier Circuits | 176 |
7 ThreePhase FullWave Controlled Bridge Rectifier Circuits with Passive Load Impedance | 214 |
8 Rectifier Power Factor and PulseWidth Modultion Controlled Rectifier Circuits | 266 |
11 ThreePhase PulseWidth Modulation Controlled Inverter Circuits | 341 |
12 PhaseControlled Cycloconverters | 364 |
13 Envelope Cycloconverters | 398 |
14 Matrix Converters | 416 |
15 DCDC Converter Circuits | 446 |
16 SwitchMode Converter Power Supplies | 478 |
General Expressions for Fourier Series | 508 |
Answers to Problems | 510 |
9 ThreePhase Naturally Commutated Controlled Bridge RectifierInverter | 288 |
10 ThreePhase StepWave Inverter Circuits | 306 |
529 | |
531 | |
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applications average load voltage average value bridge rectifier Calculate capacitor circuit of Fig Combining commutation compared conduction connected consists constant contains continuous controlled rectifier converter corresponding current waveform cycle cycloconverter defined diode diode bridge displacement factor distortion factor effect energy equal equation Example expression firing angle Fourier frequency full-wave fundamental fundamental component gate given gives half-wave harmonic highly inductive load ideal ideal supply impedance increase inductor input current instantaneous interval inverter load current load voltage maximum mode modulating motor negative obtained operation output voltage overlap period phase voltage positive power factor Problem pulse ratio rectifier circuit reduces represents resistive load respective reverse ripple rms value seen shown in Fig single-phase sinusoidal Sketch supply current supply voltage switches terminals three-phase thyristor transformer vector voltage and current voltage waveform wave zero