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Computational Welding Mechanics for Engineering Application Buckling Distortion of Thin Plate and Residual Stress of Thick Plate

Power Quality

GBP 59.99
1

Power Quality in Power Distribution Systems Concepts and Applications

Power Quality in Power Distribution Systems Concepts and Applications

The comprehensive textbook will help readers to develop analytic reasoning of power quality aspects in distribution power systems. It will as an ideal study material for senior undergraduate and graduate students in the field of electrical engineering electronics and communications engineering. • Provides explanation of transformations and power theories for single phase and three-phase systems. • Discusses concepts illustrating power quality aspects in power distribution network. • Examines detailed derivations and analysis of voltage and current compensation techniques. • Discusses custom power devices such as DSTATCOM DVR and UPQC. • Presents solved examples theoretical and numerical exercises in each chapter. This textbook comprehensively covers fundamentals concepts of power quality with the help of solved problems. It provides basic understanding of power quality aspects in power systems especially in power distribution networks and explains issues related to power quality problems their quantification analysis and interpretation. It covers important topics including single phase circuits three phase circuits theory of fundamental load compensation instantaneous reactive power theory theory of instantaneous symmetrical components dynamic voltage restorer (DVR) and unified power quality conditioner. Pedagogical features including solved problems and unsolved exercises are interspersed throughout the text for better understanding. The textbook is primarily written for senior undergraduate and graduate students in the field of electrical engineering electronics and communications engineering for courses on power quality/power system/power electronics. The textbook will be accompanied by teaching resource including solution manual for the instructors. | Power Quality in Power Distribution Systems Concepts and Applications

GBP 110.00
1

DC Power Supplies Power Management and Surge Protection for Power Electronic Systems

DC Power Supplies Power Management and Surge Protection for Power Electronic Systems

As we increasingly use electronic devices to direct our daily lives so grows our dependence on reliable energy sources to power them. Because modern electronic systems demand steady efficient reliable DC voltage sources—often at a sub-1V level—commercial AC lines batteries and other common resources no longer suffice. New technologies also require intricate techniques to protect against natural and manmade disasters. Still despite its importance practical information on this critical subject remains hard to find. Using simple accessible language to balance coverage of theoretical and practical aspects DC Power Supplies Power Management and Surge Protection details the essentials of power electronics circuits applicable to low-power systems including modern portable devices. A summary of underlying principles and essential design points it compares academic research and industry publications and reviews DC power supply fundamentals including linear and low-dropout regulators. Content also addresses common switching regulator topologies exploring resonant conversion approaches. Coverage includes other important topics such as: Control aspects and control theory Digital control and control ICs used in switching regulators Power management and energy efficiency Overall power conversion stage and basic protection strategies for higher reliability Battery management and comparison of battery chemistries and charge/discharge management Surge and transient protection of circuits designed with modern semiconductors based on submicron dimension transistors This specialized design resource explores applicable fundamental elements of power sources with numerous cited references and discussion of commercial components and manufacturers. Regardless of their previous experience level this information will greatly aid designers researchers and academics who study design and produce the viable new power sources needed to propel our modern electronic world. | DC Power Supplies Power Management and Surge Protection for Power Electronic Systems

GBP 74.99
1

Power System Capacitors

Power System Capacitors

Since transmitting reactive power over long distances is not feasible power systems integrate power factor correction capacitors to provide local reactive power compensation. With a wide range of options available and with the tremendous changes that have occurred over the past few decades a comprehensive up-to-date book on power factor capacitors is long overdue. Power System Capacitors fills this void by providing the fundamentals applications protection issues and system impacts for a broad spectrum of capacitor applications. Power System Capacitors guides you through the practical installations with easy-to-follow step-by-step instructions. The author describes the fundamentals of capacitors focused on the power factor correction industry standards capacitor specifications protection of shunt capacitors maintenance of capacitor banks and system impact issues. He also discusses the selection of supporting equipment such as fuses circuit breakers and surge arresters; includes more than 290 illustrations 90 tables and 400 equations; and explains how to perform an economic analysis. Offering up-to-date computer-aided analysis approaches along with fundamental concepts maintenance concerns and economic analysis Power System Capacitors steers you through the selection design installation and maintenance of power factor correction capacitors used in modern power systems. This is a valuable tool for any power system engineer in industry utilities consulting and practical power system evaluation.

GBP 59.99
1

Switching Power Converters Medium and High Power Second Edition

Telecom Power Systems

Elements of Power Systems

Spacecraft Power Systems

Power Engineering Advances and Challenges Part B: Electrical Power

Power Engineering Advances and Challenges Part B: Electrical Power

Traditionally power engineering has been a subfield of energy engineering and electrical engineering which deals with the generation transmission distribution and utilization of electric power and the electrical devices connected to such systems including generators motors and transformers. Implicitly this perception is associated with the generation of power in large hydraulic thermal and nuclear plants and distributed consumption. Faced with the climate change phenomena humanity has had to now contend with changes in attitudes in respect of environment protection and depletion of classical energy resources. These have had consequences in the power production sector already faced with negative public opinions on nuclear energy and favorable perception of renewable energy resources and about distributed power generation. The objective of this edited book is to review all these changes and to present solutions for future power generation. Future energy systems must factor in the changes and developments in technology like improvements of natural gas combined cycles and clean coal technologies carbon dioxide capture and storage advancements in nuclear reactors and hydropower renewable energy engineering power-to-gas conversion and fuel cells energy crops new energy vectors biomass-hydrogen thermal energy storage new storage systems diffusion modern substations high voltage engineering equipment and compatibility HVDC transmission with FACTS advanced optimization in a liberalized market environment active grids and smart grids power system resilience power quality and cost of supply plug-in electric vehicles smart metering control and communication technologies new key actors as prosumers smart cities. The emerging research will enhance the security of energy systems safety in operation protection of environment improve energy efficiency reliability and sustainability. The book reviews current literature in the advances innovative options and solutions in power engineering. It has been written for researchers engineers technicians and graduate and doctorate students interested in power engineering. | Power Engineering Advances and Challenges Part B: Electrical Power

GBP 44.99
1

Hybrid Frequentist/Bayesian Power and Bayesian Power in Planning Clinical Trials

Hybrid Frequentist/Bayesian Power and Bayesian Power in Planning Clinical Trials

Hybrid Frequentist/Bayesian Power and Bayesian Power in Planning Clinical Trials provides a practical introduction to unconditional approaches to planning randomised clinical trials particularly aimed at drug development in the pharmaceutical industry. This book is aimed at providing guidance to practitioners in using average power assurance and related concepts. This book brings together recent research and sets them in a consistent framework and provides a fresh insight into how such methods can be used. Features: A focus on normal theory linking average power expected power predictive power assurance conditional Bayesian power and Bayesian power. Extensions of the concepts to binomial and time-to-event outcomes and non-inferiority trials An investigation into the upper bound on average power assurance and Bayesian power based on the prior probability of a positive treatment effect Application of assurance to a series of trials in a development program and an introduction of the assurance of an individual trial conditional on the positive outcome of an earlier trial in the program or to the successful outcome of an interim analysis Prior distribution of power and sample size Extension of the basic approach to proof-of-concept trials with dual success criteria Investigation of the connection between conditional and predictive power at an interim analysis and power and assurance Introduction of the idea of surety in sample sizing of clinical trials based on the width of the confidence intervals for the treatment effect and an unconditional version.

GBP 99.99
1

Black Power Music Protest Songs Message Music and the Black Power Movement

Integrated Power Devices and TCAD Simulation

Power Electronics Drives and Advanced Applications

Power Cable Technology

Three-Phase Electrical Power

Designing Audio Power Amplifiers

Designing Audio Power Amplifiers

This comprehensive book on audio power amplifier design will appeal to members of the professional audio engineering community as well as the student and enthusiast. Designing Audio Power Amplifiers begins with power amplifier design basics that a novice can understand and moves all the way through to in-depth design techniques for very sophisticated audiophiles and professional audio power amplifiers. This book is the single best source of knowledge for anyone who wishes to design audio power amplifiers. It also provides a detailed introduction to nearly all aspects of analog circuit design making it an effective educational text. Develop and hone your audio amplifier design skills with in-depth coverage of these and other topics: Basic and advanced audio power amplifier design Low-noise amplifier design Static and dynamic crossover distortion demystified Understanding negative feedback and the controversy surrounding it Advanced NFB compensation techniques including TPC and TMC Sophisticated DC servo design MOSFET power amplifiers and error correction Audio measurements and instrumentation Overlooked sources of distortion SPICE simulation for audio amplifiers including a tutorial on LTspice SPICE transistor modeling including the VDMOS model for power MOSFETs Thermal design and the use of ThermalTrak™ transistors Four chapters on class D amplifiers including measurement techniques Professional power amplifiers Switch-mode power supplies (SMPS).

GBP 69.99
1

Shipboard Electrical Power Systems

Island Power Systems

Island Power Systems

A major concern of island power systems is frequency stability. A power system is said to be frequency stable if its generators are able to supply their loads at a frequency within acceptable limits after a disturbance. Frequency instability occurs if load-generation imbalances are not corrected in appropriate manner and time. Since island power systems are more sensitive to frequency instability than large ones due to the smaller number of generators online and the lower inertia they require a larger amount of primary reserve per generator. This book provides a worldwide overview of island power systems describing their main features and issues. Split into two parts the first part examines the technical operation and in particular frequency stability of island power systems and its technical solutions including more efficient underfrequency load-shedding schemes. The chapters explore both conventional and advanced load-shedding schemes and consider the improvement of these schemes by making them more robust and efficient. Advanced devices are modelled and analyzed to enhance frequency stability and reduce the need for load shedding. In the second part the economic operation of island power systems is explored in detail. For that purpose regulations and economic operations (centralized vs. market scheme) are reviewed by the authors. The authors discuss models for renewable energy sources and for advanced devices and systems such as demand-side management energy storage systems and electric vehicles. This book will be critical reading to all researchers and professionals in power system planning and engineering electrical/power delivery RES and control engineering. It will also be of interest to researchers in signal processing and telecommunications and renewable energy as well as power system utility providers.

GBP 44.99
1

SPICE for Power Electronics and Electric Power

SPICE for Power Electronics and Electric Power

Power electronics can be a difficult course for students to understand and for professors to teach. Simplifying the process for both SPICE for Power Electronics and Electric Power Third Edition illustrates methods of integrating industry standard SPICE software for design verification and as a theoretical laboratory bench. Helpful PSpice Software and Program Files Available for Download Based on the author Muhammad H. Rashid’s considerable experience merging design content and SPICE into a power electronics course this vastly improved and updated edition focuses on helping readers integrate the SPICE simulator with a minimum amount of time and effort. Giving users a better understanding of the operation of a power electronics circuit the author explores the transient behavior of current and voltage waveforms for each and every circuit element at every stage. The book also includes examples of all types of power converters as well as circuits with linear and nonlinear inductors. New in this edition: Student learning outcomes (SLOs) listed at the start of each chapter Changes to run on OrCAD version 9. 2 Added VPRINT1 and IPRINT1 commands and examples Notes that identify important concepts Examples illustrating EVALUE GVALUE ETABLE GTABLE ELAPLACE GLAPLACE EFREQ and GFREQ Mathematical relations for expected outcomes where appropriate The Fourier series of the output voltages for rectifiers and inverters PSpice simulations of DC link inverters and AC voltage controllers with PWM control This book demonstrates techniques of executing power conversions and ensuring the quality of the output waveforms rather than the accurate modeling of power semiconductor devices. This approach benefits students enabling them to compare classroom results obtained with simple switch models of devices. In addition a new chapter covers multi-level converters. Assuming no prior knowledge of SPICE or PSpice simulation the text provides detailed step-by-step instructions on how to draw a schematic of a circuit execute simulations and view or plot the output results. It also includes suggestions for laboratory experiments and design problems that can be used for student homework assignments.

GBP 74.99
1

Presidential Power Theories and Dilemmas

Power-Flow Modelling of HVDC Transmission Systems

Advanced Non-Thermal Power Generation Systems

Advanced Non-Thermal Power Generation Systems

Generally sources for power generation are broken down into two categories: thermal and non-thermal. Thermal sources for power generation include combustion geothermal solar nuclear and waste heat which essentially provide heat as a means for power generation. This book examines non-thermal (mechanical electrochemical nanoscale self-powered and hybrid) sources of power generation and emphasizes recent advances in distributed power generation systems. Key Features Details recent advances made in wind power including onshore offshore fixed and floating platform and air wind energy systems and offers detailed assessments of progress Covers advances in generation of hydropower exploring dam hydropower novel wave energy converters and novel systems and turbines for hydrokinetic energy conversion to power Examines all types of fuel cells and their multi-functional roles along with hybrid fuel cell systems in complete detail Explores advances in the development of self-powered nanogenerators for use in portable wearable and implantable power electronics Focuses on technologies with the best commercial possibilities and provides perspectives on future challenges that need to be solved This book will be of value to all researchers in academia industry and government interested in pursuing power generation technologies and seeking a comprehensive understanding of available and emerging non-thermal power generation sources. Readers who are interested in learning about thermal power generation sources can find it in the author’s companion text Advanced Power Generation Systems: Thermal Sources (2023). | Advanced Non-Thermal Power Generation Systems

GBP 150.00
1

Design of Integrally-Attached Timber Plate Structures

Design of Integrally-Attached Timber Plate Structures

Design of Integrally-Attached Timber Plate Structures outlines a new design methodology for digitally fabricated spatial timber plate structures presented with examples from recent construction projects. It proposes an innovative and sustainable design methodology algorithmic geometry processing structural optimization and digital fabrication; technology transfer and construction are formulated and widely discussed. The methodology relies on integral mechanical attachment whereby the connection between timber plates is established solely through geometric manipulation without additional connectors such as nails screws dowels adhesives or welding. The transdisciplinary design framework for spatial timber plate structures brings together digital architecture computer science and structural engineering covering parametric modeling and architectural computational design geometry exploration the digital fabrication assembly of engineered timber panels numerical simulations mechanical characterization design optimization and performance improvement. The method is demonstrated through different prototypes physical models and three build examples focusing specifically on the design of the timber-plate roof structure of 23 large span arches called the Annen Headquarters in Luxembourg. This is useful for the architecture engineering and construction (AEC) sector and shows how new structural optimization processes can be reinvented through geometrical adaptions to control global and local geometries of complex structures. This text is ideal for structural engineering professionals and architects in both industry and academia and construction companies.

GBP 48.99
1