produino dc 532v to dc 1532v converter buck adjustable electronic power regulator module



Marian Kazimierczuk K. Pulse-Width Modulated DC-DC Power Converters Marian Kazimierczuk K. Pulse-Width Modulated DC-DC Power Converters Новинка

Marian Kazimierczuk K. Pulse-Width Modulated DC-DC Power Converters

9888.52 руб. или Купить в рассрочку!
PWM DC-DC power converter technology underpins many energy conversion systems including renewable energy circuits, active power factor correctors, battery chargers, portable devices and LED drivers. Following the success of Pulse-Width Modulated DC-DC Power Converters this second edition has been thoroughly revised and expanded to cover the latest challenges and advances in the field. Key features of 2nd edition: Four new chapters, detailing the latest advances in power conversion, focus on: small-signal model and dynamic characteristics of the buck converter in continuous conduction mode; voltage-mode control of buck converter; small-signal model and characteristics of the boost converter in the discontinuous conduction mode and electromagnetic compatibility EMC. Provides readers with a solid understanding of the principles of operation, synthesis, analysis and design of PWM power converters and semiconductor power devices, including wide band-gap power devices (SiC and GaN). Fully revised Solutions for all end-of-chapter problems available to instructors via the book companion website. Step-by-step derivation of closed-form design equations with illustrations. Fully revised figures based on real data. With improved end-of-chapter summaries of key concepts, review questions, problems and answers, biographies and case studies, this is an essential textbook for graduate and senior undergraduate students in electrical engineering. Its superior readability and clarity of explanations also makes it a key reference for practicing engineers and research scientists.
Sriharsha Santhapur Simulation of the DC/DC Converter Sriharsha Santhapur Simulation of the DC/DC Converter Новинка

Sriharsha Santhapur Simulation of the DC/DC Converter

The task of this project work is to model a buck converter and a measurement system to sense the inductor current and output voltages of the buck converter system of Ericsson's BMR450. Such that the measurements of inductor current and output voltage can be sampled with 5MS/s and properly calibrated for BMR450 and get connected to the PCI-6111. Different current sensing techniques are analyzed and the chosen technique is modeled and simulated. The BMR450 system with measurement circuit model is implemented in MATLAB Simulink and SimPowersystems. Three different models of the buck converter are derived, simulated and compared.
K P AKOLE POWER ELECTRONICS K P AKOLE POWER ELECTRONICS Новинка

K P AKOLE POWER ELECTRONICS

1 Introduction to Pawer Devices 2 Line Frequency Controlled Converter/ Rectifier 3 DC-DC Converter 4 Inverter 5 AC Controllers, UPS And Simulation of Converters Appendix A, B
Irfan Jamil Analysis and Design of High Effeiceny ZCS Buck (PWM) Converter in battery charger Irfan Jamil Analysis and Design of High Effeiceny ZCS Buck (PWM) Converter in battery charger Новинка

Irfan Jamil Analysis and Design of High Effeiceny ZCS Buck (PWM) Converter in battery charger

Master's Thesis from the year 2014 in the subject Electrotechnology, grade: Master degree, Hohai University (College of Energy and Electrical Engineering), course: Power Electronics, language: English, abstract: This study employs a buck ZCS (PWM) converter and develops a novel soft-switching approach for charger batteries. This thesis presents technique for battery charger to achieve efficient performance in charging shaping, minimum low switching losses and reduction in circuit volume. The operation of circuit charger is switched with the operation of zero-current-switching, resonant components and appends the topology of dc-dc buck. The proposed novel dc-dc battery charger has advantages with the simplicity, low cost, high efficiency and the behavior of easy control under the ZCS condition accordingly reducing the switching losses. The detailed study of operating principle and circuit design consideration is performed. A short survey of battery charging system, capacity demand & its topological is also presented. In order to compute LC resonant pair values in conventional converter, the method of characteristic curve is used and electric function equations are derived from the prototype configuration. The efficient performance of charging shaping is confirmed through the practical examines and verification of the results is revealed by the MATLAB simulation. The efficiency is ensured about 89% which is substantially considered being satisfactory performance as achi...
Andrzej Trzynadlowski M. Introduction to Modern Power Electronics Andrzej Trzynadlowski M. Introduction to Modern Power Electronics Новинка

Andrzej Trzynadlowski M. Introduction to Modern Power Electronics

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Provides comprehensive coverage of the basic principles and methods of electric power conversion and the latest developments in the field This book constitutes a comprehensive overview of the modern power electronics. Various semiconductor power switches are described, complementary components and systems are presented, and power electronic converters that process power for a variety of applications are explained in detail. This third edition updates all chapters, including new concepts in modern power electronics. New to this edition is extended coverage of matrix converters, multilevel inverters, and applications of the Z-source in cascaded power converters. The book is accompanied by a website hosting an instructor’s manual, a PowerPoint presentation, and a set of PSpice files for simulation of a variety of power electronic converters. Introduction to Modern Power Electronics, Third Edition: Discusses power conversion types: ac-to-dc, ac-to-ac, dc-to-dc, and dc-to-ac Reviews advanced control methods used in today’s power electronic converters Includes an extensive body of examples, exercises, computer assignments, and simulations Introduction to Modern Power Electronics, Third Edition is written for undergraduate and graduate engineering students interested in modern power electronics and renewable energy systems. The book can also serve as a reference tool for practicing electrical and industrial engineers.
Oleg Wasynczuk Introduction to Electric Power and Drive Systems Oleg Wasynczuk Introduction to Electric Power and Drive Systems Новинка

Oleg Wasynczuk Introduction to Electric Power and Drive Systems

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An introduction to the analysis of electric machines, power electronic circuits, electric drive performance, and power systems This book provides students with the basic physical concepts and analysis tools needed for subsequent coursework in electric power and drive systems with a focus on Tesla’s rotating magnetic field. Organized in a flexible format, it allows instructors to select material as needed to fit their school’s power program. The first chapter covers the fundamental concepts and analytical methods that are common to power and electric drive systems. The subsequent chapters offer introductory analyses specific to electric machines, power electronic circuits, drive system performance and simulation, and power systems. In addition, this book: Provides students with an analytical base on which to build in advanced follow-on courses Examines fundamental power conversions (dc-dc, ac-dc and dc-ac), harmonics, and distortion Describes the dynamic computer simulation of a brushless dc drive to illustrate its performance with both a sinusoidal inverter voltage approximation and more realistic stator six-step drive applied voltages Includes in-chapter short problems, numerous worked examples, and end-of-chapter problems to help readers review and more fully understand each topic
Khadka Subarna Bijaya Simulation of MPPT based PV system for Pumping Application Khadka Subarna Bijaya Simulation of MPPT based PV system for Pumping Application Новинка

Khadka Subarna Bijaya Simulation of MPPT based PV system for Pumping Application

The operating point of the PV system depends upon the temperature, irradiation, wind speed, humidity and other environmental factors. To operate the photovoltaic system in a power efficient way, the designer should be well acquainted with the knowledge of photovoltaic behavior in terms of voltage, current and power. The task of an efficient PV system is to track the maximum operating point correctly so that optimum power can be received from the sun. Although the efficiency of the solar photo voltaic system is improving day by day but still optimum power has not been harnessed due to changes in temperature, irradiance and other factors that vary with places. The study has investigated the change in volume of water pumped by using maximum power point tracking mechanism and its benefits to the end user. The work is based on the maximum power transfer theory. The DC-DC converter will match the impedance of the photovoltaic module with the load by generating appropriate duty cycle that will be used to turn ON or OFF the electronic switch of the converter. Hence, this study is intended to design and simulate an efficient MPPT based PV tracking system for pumping application.
Zhang Bo Sneak Circuits of Power Electronic Converters Zhang Bo Sneak Circuits of Power Electronic Converters Новинка

Zhang Bo Sneak Circuits of Power Electronic Converters

12824.79 руб. или Купить в рассрочку!
The first treatment of advanced knowledge of electrical sneak circuits and its analysis method in power electronics The work on sneak circuit and its analysis methods for power converters contributes to the reliability of power electronic systems worldwide. Most books in the subject concentrate on electronic systems, but this book is perhaps the first to examine power electronic systems. It describes the sneak circuit phenomena in power converters, introduces some SCA methods for power electronic systems and proposes how to eliminate and make use of sneak circuits. The book is divided into three separate sections. Firstly, the sneak circuit paths and sneak circuit operating conditions are discussed in different kinds of power converters, including resonant switched capacitor converters, basic DC-DC converters, soft-switching converters and Z-source converters; Secondly, the sneak circuit analysis guidelines for power converters based on generalized matrix, adjacency matrix and Boolean matrix are presented respectively; Thirdly, the sneak circuit elimination techniques are introduced and verified in several power converters, with applications of sneak circuits described in conclusion. Written by a lead author with extensive academic and industrial experience, the book provides a complete introduction and reference to students and professionals alike. Contents include: Fundamental Concepts, SCA of Resonant Switched Capacitor Converters, SC of DC-DC Converters, SC Analysis Method (including Boolian Matrix), and Applications of SC in Power Converters. Highlights the advanced research works in the sneak circuit analysis, by a leading author in the field Original in its treatment of power electronics converters; most other books concentrating on electronics systems, and aimed at both introductory and advanced levels Offers guidelines for industry professionals involved in the design of power electronic systems, enabling early detection of potential problems Essential reading for Graduate students in Electrical Engineering: Engineers and Researchers in Power Electronics
Bo Zhang Chaos Analysis and Chaotic EMI Suppression of DC-DC Converters Bo Zhang Chaos Analysis and Chaotic EMI Suppression of DC-DC Converters Новинка

Bo Zhang Chaos Analysis and Chaotic EMI Suppression of DC-DC Converters

9998.96 руб. или Купить в рассрочку!
Introduces chaos theory, its analytical methods and the means to apply chaos to the switching power supply design DC-DC converters are typical switching systems which have plenty of nonlinear behaviors, such as bifurcation and chaos. The nonlinear behaviors of DC-DC converters have been studied heavily over the past 20 years, yet researchers are still unsure of the practical application of bifurcations and chaos in switching converters. The electromagnetic interference (EMI), which resulted from the high rates of changes of voltage and current, has become a major design criterion in DC-DC converters due to wide applications of various electronic devices in industry and daily life, and the question of how to reduce the annoying, harmful EMI has attracted much research interest. This book focuses on the analysis and application of chaos to reduce harmful EMI of DC-DC converters. After a review of the fundamentals of chaos behaviors of DC-DC converters, the authors present some recent findings such as Symbolic Entropy, Complexity and Chaos Point Process, to analyze the characters of chaotic DC-DC converters. Using these methods, the statistic characters of chaotic DC-DC converters are extracted and the foundations for the following researches of chaotic EMI suppression are reinforced. The focus then transfers to estimating the power spectral density of chaotic PWM converters behind an introduction of basic principles of spectrum analysis and chaotic PWM technique. Invariant Density, and Prony and Wavelet analysis methods are suggested for estimating the power spectral density of chaotic PWM converters. Finally, some design-oriented applications provide a good example of applying chaos theory in engineering practice, and illustrate the effectiveness on suppressing EMI of the proposed chaotic PWM. Introduces chaos theory, its analytical methods and the means to apply chaos to the switching power supply design Approaches the subject in a systematic manner from analyzing method, chaotic phenomenon and EMI characteristics, analytical methods for chaos, and applying chaos to reduce EMI (electromagnetic interference) Highlights advanced research work in the fields of statistic characters of nonlinear behaviors and chaotic PWM technology to suppress EMI of switching converters Bridges the gap between numerical theory and real-world applications, enabling power electronics designers to both analyze the effects of chaos and leverage these effects to reduce EMI
Jamil Irfan, Zhao Jinquan Techniques for Battery Charger System (Power Electronics) Jamil Irfan, Zhao Jinquan Techniques for Battery Charger System (Power Electronics) Новинка

Jamil Irfan, Zhao Jinquan Techniques for Battery Charger System (Power Electronics)

The short summary and promotional piece accompanying a creative work is about for battery charger system using ZCS (PWM) Resonant Converter Dc-Dc Buck. The aim and scope of this work to investigate the high efficiency of charging for battery level. The idea is forced to gain high efficiency, low circuit volume, minimize switching losses and satisfactory performance. The brief discussion of battery charger system and on use able functional methods. The short study of circuit descriptions, operating modes, output voltage gain and normalized voltage gain is also summarized. This high repetitious work which will give gratification fulfillment with the theoretical predictions to readers. I have special thanks to Engr. Rizwan Jamil to help me with research and development of the scope of this work.
Agasthya Ayachit Laboratory Manual for Pulse-Width Modulated DC-DC Power Converters Agasthya Ayachit Laboratory Manual for Pulse-Width Modulated DC-DC Power Converters Новинка

Agasthya Ayachit Laboratory Manual for Pulse-Width Modulated DC-DC Power Converters

4791.34 руб. или Купить в рассрочку!
Designed to complement a range of power electronics study resources, this unique lab manual helps students to gain a deep understanding of the operation, modeling, analysis, design, and performance of pulse-width modulated (PWM) DC-DC power converters. Exercises focus on three essential areas of power electronics: open-loop power stages; small-signal modeling, design of feedback loops and PWM DC-DC converter control schemes; and semiconductor devices such as silicon, silicon carbide and gallium nitride. Meeting the standards required by industrial employers, the lab manual combines programming language with a simulation tool designed for proficiency in the theoretical and practical concepts. Students and instructors can choose from an extensive list of topics involving simulations on MATLAB, SABER, or SPICE-based platforms, enabling readers to gain the most out of the prelab, inlab, and postlab activities. The laboratory exercises have been taught and continuously improved for over 25 years by Marian K. Kazimierczuk thanks to constructive student feedback and valuable suggestions on possible workroom improvements. This up-to-date and informative teaching material is now available for the benefit of a wide audience. Key features: • Includes complete designs to give students a quick overview of the converters, their characteristics, and fundamental analysis of operation. • Compatible with any programming tool (MATLAB, Mathematica, or Maple) and any circuit simulation tool (PSpice, LTSpice, Synopsys SABER, PLECS, etc.). • Quick design section enables students and instructors to verify their design methodology for instant simulations. • Presents lab exercises based on the most recent advancements in power electronics, including multiple-output power converters, modeling, current- and voltage-mode control schemes, and power semiconductor devices. • Provides comprehensive appendices to aid basic understanding of the fundamental circuits, programming and simulation tools. • Contains a quick component selection list of power MOSFETs and diodes together with their ratings, important specifications and Spice models.
Czarkowski Dariusz Resonant Power Converters Czarkowski Dariusz Resonant Power Converters Новинка

Czarkowski Dariusz Resonant Power Converters

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This book is devoted to resonant energy conversion in power electronics. It is a practical, systematic guide to the analysis and design of various dc-dc resonant inverters, high-frequency rectifiers, and dc-dc resonant converters that are building blocks of many of today's high-frequency energy processors. Designed to function as both a superior senior-to-graduate level textbook for electrical engineering courses and a valuable professional reference for practicing engineers, it provides students and engineers with a solid grasp of existing high-frequency technology, while acquainting them with a number of easy-to-use tools for the analysis and design of resonant power circuits. Resonant power conversion technology is now a very hot area and in the center of the renewable energy and energy harvesting technologies.
Braham Ferreira The Principles of Electronic and Electromechanic Power Conversion. A Systems Approach Braham Ferreira The Principles of Electronic and Electromechanic Power Conversion. A Systems Approach Новинка

Braham Ferreira The Principles of Electronic and Electromechanic Power Conversion. A Systems Approach

7532.49 руб. или Купить в рассрочку!
A top-down approach that enables readers to master and apply core principles Using an innovative top-down approach, this text makes it possible for readers to master and apply the principles of contemporary power electronics and electromechanic power conversion, exploring both systems and individual components. First, the text introduces the role and system context of power conversion functions. Then the authors examine the building blocks of power conversion systems, describing how the components exchange power. Lastly, readers learn the principles of static and electromechanic power conversion. The Principles of Electronic and Electromechanic Power Conversion opens with a chapter that introduces core concepts in electrical systems and power conversion, followed by a chapter dedicated to electrical power sources and energy storage. Next, the book covers: Power, reactive power, and power factor Magnetically coupled networks Dynamics of rotational systems Power electronic converters DC machines AC machines The text offers readers a concise treatise on the basic concepts of magnetic circuits. Its simple approach to machines makes the principles of field-oriented control and space vector theory highly accessible. In order to help readers fully grasp power electronics, the authors focus on topologies that use a series transistor and diode combination connected to a DC source, a standard building block of today’s power conversion systems. Problem sets at the end of each chapter enable readers to fully master each topic as they progress through the text. In summary, The Principles of Electronic and Electromechanic Power Conversion provides the most up-to-date, relevant tools needed by today’s power engineers, making it an ideal undergraduate textbook as well as a self-study guide for practicing engineers.
Junwei Lu Harmonic Balance Finite Element Method. Applications in Nonlinear Electromagnetics and Power Systems Junwei Lu Harmonic Balance Finite Element Method. Applications in Nonlinear Electromagnetics and Power Systems Новинка

Junwei Lu Harmonic Balance Finite Element Method. Applications in Nonlinear Electromagnetics and Power Systems

10446.38 руб. или Купить в рассрочку!
The first book applying HBFEM to practical electronic nonlinear field and circuit problems • Examines and solves wide aspects of practical electrical and electronic nonlinear field and circuit problems presented by HBFEM • Combines the latest research work with essential background knowledge, providing an all-encompassing reference for researchers, power engineers and students of applied electromagnetics analysis • There are very few books dealing with the solution of nonlinear electric- power-related problems • The contents are based on the authors’ many years’ research and industry experience; they approach the subject in a well-designed and logical way • It is expected that HBFEM will become a more useful and practical technique over the next 5 years due to the HVDC power system, renewable energy system and Smart Grid, HF magnetic used in DC/DC converter, and Multi-pulse transformer for HVDC power supply • HBFEM can provide effective and economic solutions to R&D product development • Includes Matlab exercises
Abdelkrim Benchaib Advanced Control of AC / DC Power Networks. System of Systems Approach Based on Spatio-temporal Scales Abdelkrim Benchaib Advanced Control of AC / DC Power Networks. System of Systems Approach Based on Spatio-temporal Scales Новинка

Abdelkrim Benchaib Advanced Control of AC / DC Power Networks. System of Systems Approach Based on Spatio-temporal Scales

9837.55 руб. или Купить в рассрочку!
The power engineering domain is facing huge challenges, with an increasing interest in intermittent renewable energies which are imposing major technical limitations. Operating ever closer to their limits, the industry-standard AC power grids are subject to instabilities. This book presents an insight into DC grid systems, offering interesting issues to well controlled power grids, in contrast to current AC systems which provide the simplest and most economic connection method for short distances.
Ali Keyhani Design of Smart Power Grid Renewable Energy Systems Ali Keyhani Design of Smart Power Grid Renewable Energy Systems Новинка

Ali Keyhani Design of Smart Power Grid Renewable Energy Systems

11192.55 руб. или Купить в рассрочку!
Provides a systems approach to sustainable green energy production and contains analytical tools to aid in the design of renewable microgrids This book discusses the fundamental concepts of power grid integration on microgrids of green energy sources. In each chapter, the author presents a key engineering problem, and then formulates a mathematical model of the problem followed by a simulation testbed in MATLAB, highlighting solution steps. The book builds its foundation on design of distributed generating system, and design of PV generating plants by introducing design- efficient smart residential PV microgrids. These include energy monitoring systems, smart devices, building load estimation, load classification, and real-time pricing. The book presents basic concepts of phasor systems, three-phase systems, transformers, loads, DC/DC converters, DC/AC inverters, and AC/DC rectifiers, which are all integrated into the design of microgrids for renewable energy as part of bulk interconnected power grids. Other topics of discussion include the Newton formulation of power flow, the Newton—Raphson solution of a power flow problem, the fast decoupled solution for power flow studies, and short circuit calculations. Focuses on the utilization of DC/AC inverters as a three-terminal element of power systems for the integration of renewable energy sources Presents basic concepts of phasor systems, three-phase systems, transformers, loads, DC/DC converters, DC/AC inverters, and AC/DC rectifiers Contains problems at the end of each chapter Supplementary material includes a solutions manual and PowerPoint presentations for instructors Design of Smart Power Grid Renewable Energy Systems, Second Edition is a textbook for undergraduate and graduate students in electric power systems engineering, researchers, and industry professionals. ALI KEYHANI, Ph.D., is a Professor in the Department of Electrical and Computer Engineering at The Ohio State University. He is a Fellow of the IEEE and a recipient of The Ohio State University, College of Engineering Research Award for 1989, 1999, and 2003. He has worked for Columbus and Southern Electric Power Company, Hewlett-Packard Co., Foster Wheeler Engineering, and TRW. He has performed research and consulting for American Electric Power, TRW Control, Liebert, Delphi Automotive Systems, General Electric, General Motors, and Ford. Dr. Keyhani has authored many articles in IEEE Transactions in energy conversion, power electronics, and power systems engineering.
AC/DC AC/DC. Highway To Hell AC/DC AC/DC. Highway To Hell Новинка

AC/DC AC/DC. Highway To Hell

"Highway To Hell" — шестой студийный альбом австралийской рок-группы "AC/DC", выпущенный в 1979 году. Бесспорно самый популярный альбом "AC/DC" в момент выпуска, "Highway To Hell" значительно расширил круг слушателей группы и стал трамплином перед головокружительным взлетом в следующем году с альбомом "Back In Black". Рекомендуем!
Amirnaser Yazdani Multi-terminal Direct-Current Grids. Modeling, Analysis, and Control Amirnaser Yazdani Multi-terminal Direct-Current Grids. Modeling, Analysis, and Control Новинка

Amirnaser Yazdani Multi-terminal Direct-Current Grids. Modeling, Analysis, and Control

10446.38 руб. или Купить в рассрочку!
A generic DC grid model that is compatible with the standard AC system stability model is presented and used to analyse the interaction between the DC grid and the host AC systems. A multi-terminal DC (MTDC) grid interconnecting multiple AC systems and offshore energy sources (e.g. wind farms) across the nations and continents would allow effective sharing of intermittent renewable resources and open market operation for secure and cost-effective supply of electricity. However, such DC grids are unprecedented with no operational experience. Despite lots of discussions and specific visions for setting up such MTDC grids particularly in Europe, none has yet been realized in practice due to two major technical barriers: Lack of proper understanding about the interaction between a MTDC grid and the surrounding AC systems. Commercial unavailability of efficient DC side fault current interruption technology for conventional voltage sourced converter systems This book addresses the first issue in details by presenting a comprehensive modeling, analysis and control design framework. Possible methodologies for autonomous power sharing and exchange of frequency support across a MTDC grid and their impact on overall stability is covered. An overview of the state-of-the-art, challenges and on-going research and development initiatives for DC side fault current interruption is also presented.
Akshay Kumar DFIG-based Wind Power Conversion System Connected to Grid Akshay Kumar DFIG-based Wind Power Conversion System Connected to Grid Новинка

Akshay Kumar DFIG-based Wind Power Conversion System Connected to Grid

Master's Thesis from the year 2014 in the subject Engineering - Power Engineering, grade: 7.8, Ajay Kumar Garg Engineering College, course: M.Tech, language: English, abstract: Wind generation has become the most important alternate energy source and has experienced increased progress in India during the past decade. While it has great potential as an alternative to less environmentally friendly energy sources, there are various technical challenges that cause wind to be considered negatively by many utilities. Wind energy conversion systems suffer from the fact that their real power generation is closely dependent on the local environmental conditions. The Doubly Fed Induction Generator (DFIG) based wind turbine with variable-speed variable-pitch control scheme is the most popular wind power generator in the wind power industry. This machine can be operated either in grid connected or standalone mode. In this thesis, a detailed electromechanical model of a DFIG-based wind turbine connected to power grid as well as separately operated wind turbine system with different sub-systems is developed in the MATLAB/SIMULINK environment and its equivalent generator and turbine control structure is realized. In this regard following configurations have been considered:• DFIG with Battery storage sub-system• DFIG with Buck-Boost converter• DFIG with transformer• DFIG with 3-winding transformerAddition of battery storage and buck-boost converter sub-systems into the system enables no...
Poh Loh Chiang Impedance Source Power Electronic Converters Poh Loh Chiang Impedance Source Power Electronic Converters Новинка

Poh Loh Chiang Impedance Source Power Electronic Converters

Impedance Source Power Electronic Converters brings together state of the art knowledge and cutting edge techniques in various stages of research related to the ever more popular impedance source converters/inverters. Significant research efforts are underway to develop commercially viable and technically feasible, efficient and reliable power converters for renewable energy, electric transportation and for various industrial applications. This book provides a detailed understanding of the concepts, designs, controls, and application demonstrations of the impedance source converters/inverters. Key features: Comprehensive analysis of the impedance source converter/inverter topologies, including typical topologies and derived topologies. Fully explains the design and control techniques of impedance source converters/inverters, including hardware design and control parameter design for corresponding control methods. Presents the latest power conversion solutions that aim to advance the role of power electronics into industries and sustainable energy conversion systems. Compares impedance source converter/inverter applications in renewable energy power generation and electric vehicles as well as different industrial applications. Provides an overview of existing challenges, solutions and future trends. Supported by calculation examples, simulation models and results. Highly accessible, this is an invaluable resource for researchers, postgraduate/graduate students studying power electronics and its application in industry and renewable energy conversion as well as practising R&D engineers. Readers will be able to apply the presented material for the future design of the next generation of efficient power electronic converters/inverters.
Djsgll Online Djsgll Online Новинка

Djsgll Online

DC meets Z. From chatrooms, Instant Messaging, profile exchange and emails to fun style sex then real life. A weekend gone supernova. DC is a math academic. Z is a mystery. DC meets Z. From chatrooms, Instant Messaging, profile exchange and emails to fun style sex then real life. A weekend gone blackhole. Z is a quadriplegic DJ. DC is a mystery.
Eric Monmasson Power Electronic Converters. PWM Strategies and Current Control Techniques Eric Monmasson Power Electronic Converters. PWM Strategies and Current Control Techniques Новинка

Eric Monmasson Power Electronic Converters. PWM Strategies and Current Control Techniques

15917.82 руб. или Купить в рассрочку!
A voltage converter changes the voltage of an electrical power source and is usually combined with other components to create a power supply. This title is devoted to the control of static converters, which deals with pulse-width modulation (PWM) techniques, and also discusses methods for current control. Various application cases are treated. The book is ideal for professionals in power engineering, power electronics, and electric drives industries, as well as practicing engineers, university professors, postdoctoral fellows, and graduate students.
Petar Grbovic J. Ultra-Capacitors in Power Conversion Systems. Analysis, Modeling and Design in Theory and Practice Petar Grbovic J. Ultra-Capacitors in Power Conversion Systems. Analysis, Modeling and Design in Theory and Practice Новинка

Petar Grbovic J. Ultra-Capacitors in Power Conversion Systems. Analysis, Modeling and Design in Theory and Practice

10033.51 руб. или Купить в рассрочку!
Ultra-capacitors, used as short-term energy storage devices, are growing in popularity especially in the transportation and renewable energy sectors. This text provides an up-to-date and comprehensive analysis of ultra-capacitor theory, modeling and module design from an application perspective, focusing on the practical aspects of power conversion and ultra-capacitor integration with power electronics systems. Key features: clearly explains the theoretical and practical aspects of ultra-capacitor, analysis, modelling and design describes different power conversion applications such as variable speed drives, renewable energy systems, traction, power quality, diesel electric hybrid applications provides detailed guidelines for the design and selection of ultra-capacitor modules and interface dc-dc converters includes end-of-chapter exercises and design examples This is an essential reference for power electronics engineers and professionals wanting to expand their knowledge of advanced ultra-capacitor energy storage devices and their application in power conversion. It is also a valuable resource for industrial design engineers as well as academics and advanced students in power electronics who want to develop their understanding about this highly topical subject.
Vinay Divakar Mechanical Aspects in Electronics Systems Design Vinay Divakar Mechanical Aspects in Electronics Systems Design Новинка

Vinay Divakar Mechanical Aspects in Electronics Systems Design

Scientific Study from the year 2013 in the subject Engineering - Mechanical Engineering, grade: B+, , course: Electronics Systems Design, language: English, abstract: In chapter 1, the present research carried on the mature laser technology i.e. GaAs, in order to improve its efficiency. The packaging principle used for receivers can be applied for the packaging of the laser driver circuit and the laser source in a single module. The concept of FRACAS (Failure Reporting, Analysis and Corrective Action System) has been described and failure analysis technique for Electrical overstress (EOS) is described. An industrial approach to calculating the reliability of a system with some known data is described. Some challenges with respect to packaging has been discussed in detail and some methods to overcome challenges such as lattice mismatch has been described.Every electronic components or electronic systems have certain specifications based on which it is developed and all components have datasheets of their own. The datasheets consists complete details related to the product such as product design specifications, packaging type, power ratings, dimensions etc. Any components can be selected for a particular application by referring their datasheets. In chapter 2, a datasheet for a DC power supply has been developed covering most of the important details that may be needed for designing and modeling using software tools. The schematic of the power supply is developed and practical ...
Teuvo Suntio Power Electronic Converters. Dynamics and Control in Conventional and Renewable Energy Applications Teuvo Suntio Power Electronic Converters. Dynamics and Control in Conventional and Renewable Energy Applications Новинка

Teuvo Suntio Power Electronic Converters. Dynamics and Control in Conventional and Renewable Energy Applications

27235.91 руб. или Купить в рассрочку!
Filling the need for a reference that explains the behavior of power electronic converters, this book provides information currently unavailable in similar texts on power electronics. Clearly organized into four parts, the first treats the dynamics and control of conventional converters, while the second part covers the dynamics and control of DC-DC converters in renewable energy applications, including an introduction to the sources as well as the design of current-fed converters applying duality-transformation methods. The third part treats the dynamics and control of three-phase rectifiers in voltage-sourced applications, and the final part looks at the dynamics and control of three-phase inverters in renewable-energy applications. With its future-oriented perspective and advanced, first-hand knowledge, this is a prime resource for researchers and practicing engineers needing a ready reference on the design and control of power electronic converters.
Олимпийка DC Shoes DC Shoes DC329EMEDBW3 Олимпийка DC Shoes DC Shoes DC329EMEDBW3 Новинка

Олимпийка DC Shoes DC Shoes DC329EMEDBW3

Олимпийка DC Shoes. Цвет: синий. Сезон: Весна-лето 2019. С бесплатной доставкой и примеркой на Lamoda.
Брюки DC Shoes DC Shoes DC329EMEDBT9 Брюки DC Shoes DC Shoes DC329EMEDBT9 Новинка

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Брюки DC Shoes. Цвет: синий. Сезон: Весна-лето 2019. С бесплатной доставкой и примеркой на Lamoda.
Футболка DC Shoes DC Shoes DC329EMEDBY7 Футболка DC Shoes DC Shoes DC329EMEDBY7 Новинка

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Provides a systems approach to sustainable green energy production and contains analytical tools to aid in the design of renewable microgrids This book discusses the fundamental concepts of power grid integration on microgrids of green energy sources. In each chapter, the author presents a key engineering problem, and then formulates a mathematical model of the problem followed by a simulation testbed in MATLAB, highlighting solution steps. The book builds its foundation on design of distributed generating system, and design of PV generating plants by introducing design- efficient smart residential PV microgrids. These include energy monitoring systems, smart devices, building load estimation, load classification, and real-time pricing. The book presents basic concepts of phasor systems, three-phase systems, transformers, loads, DC/DC converters, DC/AC inverters, and AC/DC rectifiers, which are all integrated into the design of microgrids for renewable energy as part of bulk interconnected power grids. Other topics of discussion include the Newton formulation of power flow, the Newton—Raphson solution of a power flow problem, the fast decoupled solution for power flow studies, and short circuit calculations. Focuses on the utilization of DC/AC inverters as a three-terminal element of power systems for the integration of renewable energy sources Presents basic concepts of phasor systems, three-phase systems, transformers, loads, DC/DC converters, DC/AC inverters, and AC/DC rectifiers Contains problems at the end of each chapter Supplementary material includes a solutions manual and PowerPoint presentations for instructors Design of Smart Power Grid Renewable Energy Systems, Second Edition is a textbook for undergraduate and graduate students in electric power systems engineering, researchers, and industry professionals. ALI KEYHANI, Ph.D., is a Professor in the Department of Electrical and Computer Engineering at The Ohio State University. He is a Fellow of the IEEE and a recipient of The Ohio State University, College of Engineering Research Award for 1989, 1999, and 2003. He has worked for Columbus and Southern Electric Power Company, Hewlett-Packard Co., Foster Wheeler Engineering, and TRW. He has performed research and consulting for American Electric Power, TRW Control, Liebert, Delphi Automotive Systems, General Electric, General Motors, and Ford. Dr. Keyhani has authored many articles in IEEE Transactions in energy conversion, power electronics, and power systems engineering.
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