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Digital Signal Processing in Power Electronics Control Circuits: Power Systems

Autor Krzysztof Sozański
en Limba Engleză Hardback – 22 mai 2017
This revised and extended second edition covers problems concerning the design and realization of digital control algorithms for power electronics circuits using digital signal processing (DSP) methods. This book discusses signal processing, starting from analog signal acquisition, through conversion to digital form, methods of filtration and separation, and ending with pulse control of output power transistors. The book is focused on two applications for the considered methods of digital signal processing, a three-phase shunt active power filter and a digital class-D audio power amplifier. The book bridges the gap between power electronics and digital signal processing.

Many control algorithms and circuits for power electronics in the current literature are described using analog transmittances. This may not always be acceptable, especially if half of the sampling frequencies and half of the power transistor switching frequencies are close to the band ofinterest. Therefore in this book, a digital circuit is treated as a digital circuit with its own peculiar characteristics, rather than an analog circuit. This helps to avoid errors and instability.

This edition includes a new chapter dealing with selected problems of simulation of power electronics systems together with digital control circuits. The book includes numerous examples using MATLAB and PSIM programs.
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Specificații

ISBN-13: 9781447173311
ISBN-10: 1447173317
Pagini: 340
Ilustrații: XXI, 340 p. 323 illus., 272 illus. in color.
Dimensiuni: 155 x 235 x 21 mm
Greutate: 0.69 kg
Ediția:2nd ed. 2017
Editura: SPRINGER LONDON
Colecția Springer
Seria Power Systems

Locul publicării:London, United Kingdom

Cuprins

Introduction.- Analog Signals Conditioning and Discretization.- Selected Methods of Signal Filtration and Separation and their Implementation.- Selected Active Power Filter Control Algorithms.- Digital Signal Processing Circuits for Digital Class D Power Amplifiers.- Conclusion.

Notă biografică

Krzysztof Sozański is an Associate Professor in the Electrical Engineering Institute at the University of Zielona Góra, Zielona Góra, Poland. His main research areas are: digital signal processing, digital signal processing in power electronics, realizations of advanced control algorithms using digital signal processors, programming of digital signal processors (DSP), software for microcontrollers and DSP, especially C language, Matlab, Pspice, Psim for simulation, and designing magnetic elements for power electronics.

Textul de pe ultima copertă

This revised and extended second edition covers problems concerning the design and realization of digital control algorithms for power electronics circuits using digital signal processing (DSP) methods. This book discusses signal processing, starting from analog signal acquisition, through conversion to digital form, methods of filtration and separation, and ending with pulse control of output power transistors. The book is focused on two applications for the considered methods of digital signal processing, a three-phase shunt active power filter and a digital class-D audio power amplifier. The book bridges the gap between power electronics and digital signal processing.

Many control algorithms and circuits for power electronics in the current literature are described using analog transmittances. This may not always be acceptable, especially if half of the sampling frequencies and half of the power transistor switching frequencies are close to the band ofinterest. Therefore in this book, a digital circuit is treated as a digital circuit with its own peculiar characteristics, rather than an analog circuit. This helps to avoid errors and instability.

This edition includes a new chapter dealing with selected problems of simulation of power electronics systems together with digital control circuits. The book includes numerous examples using MATLAB and PSIM programs.

Caracteristici

Provides more MATLAB listings, which further complement and enrich the text by providing worked examples to the solutions in the book Includes a new chapter considering problems of simulation of power electronics systems together with digital control circuits Conducts simulations using MATLAB and PSIM programs Has added more figures and revised all the existing ones and in color Includes the author’s new solution for a shunt-active power filter Includes supplementary material: sn.pub/extras Includes supplementary material: sn.pub/extras

Descriere

Descriere de la o altă ediție sau format:
Many digital control circuits in current literature are described using analog transmittance. This may not always be acceptable, especially if the sampling frequency and power transistor switching frequencies are close to the band of interest. Therefore, a digital circuit is considered as a digital controller rather than an analog circuit. This helps to avoid errors and instability in high frequency components.
Digital Signal Processing in Power Electronics Control Circuits covers problems concerning the design and realization of digital control algorithms for power electronics circuits using digital signal processing (DSP) methods. This book bridges the gap between power electronics and DSP. The following realizations of digital control circuits are considered: digital signal processors, microprocessors, microcontrollers, programmable digital circuits.
Discussed in this book is signal processing, starting from analog signal acquisition, through its conversion to digital form, methods of its filtration and separation, and ending with pulse control of output power transistors. The book is focused on two applications for the considered methods of digital signal processing: an active power filter and a digital class D power amplifier.
The major benefit to readers is the acquisition of specific knowledge concerning discussions on the processing of signals from voltage or current sensors using a digital signal processor and to the signals controlling the output inverter transistors. Included are some Matlab examples for illustration of the considered problems.