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This concise overview of digital signal generation will introduce you to powerful, flexible and practical digital waveform generation techniques. These techniques, based on phase-accumulation and phase-amplitude mapping, will enable you to generate sinusoidal and arbitrary real-time digital waveforms to fit your desired waveshape, frequency, phase offset and amplitude, and to design bespoke digital waveform generation systems from scratch. Including a review of key definitions, a brief explanatory introduction to classical analogue waveform generation and its basic conceptual and mathematical foundations, coverage of recursion, DDS, IDFT and dynamic waveshape and spectrum control, a chapter dedicated to detailed examples of hardware design, and accompanied by downloadable Mathcad models created to help you explore 'what if?' design scenarios, this is essential reading for practitioners in the digital signal processing community, and for students who want to understand and apply digital waveform synthesis techniques.
Signal processing --- Electric waves. --- Oscillators, Electric. --- Digital techniques.
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Signal theory (Telecommunication) --- controlesystemen --- regeltechniek --- Electric signal theory --- Electric waves --- Signal detection --- Telecommunication
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This book is the first to give an introduction to microwave de-embedding, showing how it is the cornerstone for waveform engineering. The authors of each chapter clearly explain the theoretical concepts, providing a foundation that supports linear and non-linear measurements, modelling and circuit design. Recent developments and future trends in the field are covered throughout, including successful strategies for low-noise and power amplifier design. This book is a must-have for those wishing to understand the full potential of the microwave de-embedding concept to achieve successful resul
Microwaves. --- Microwave measurements. --- Microwave circuits. --- Circuits, Microwave --- Electronic circuits --- Microwave devices --- Electronic measurements --- Hertzian waves --- Electric waves --- Electromagnetic waves --- Geomagnetic micropulsations --- Radio waves --- Shortwave radio
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Surge protectors for application on multiconductor balanced or unbalanced data, communications, and signaling circuits with voltages equal to or less than 1000 Vrms, or 1200 V dc are covered by this standard. These surge protectors are designed to limit voltage surges, current surges, or both. The methods of testing and criteria for determining the end of life of electrical surge protectors used in low-voltage data, communications, and signaling circuits are described. The surge protectors covered are multiple-component series or parallel combinations of linear or nonlinear elements, packaged for the purpose of limiting voltage, current, or both. This standard is not intended to cover packaged single gas tube, air gap, varistor, or avalanche junction surge-protective devices, which are covered by IEEE Std C62.31 [B21], IEEE Std C62.32 [B22], IEEE Std C62.33 [B23], and IEEE Std C62.35 [B24], respectively. Keywords: communications circuits, current limiters, data circuits, electrical protection, IEEE C62.36, signaling circuits, surge protectors, surge- protective devices, voltage limiters.
Transients (Electricity) --- Electric surge --- Electric transient phenomena --- Surge (Electricity) --- Electric apparatus and appliances --- Electric currents --- Electric waves --- Lightning --- Oscillators, Electric --- Protection --- Standards. --- Electric circuits
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Surge protectors for application on multiconductor balanced or unbalanced data, communications, and signaling circuits with voltages equal to or less than 1000 Vrms, or 1200 V dc are covered by this standard. These surge protectors are designed to limit voltage surges, current surges, or both. The methods of testing and criteria for determining the end of life of electrical surge protectors used in low-voltage data, communications, and signaling circuits are described. The surge protectors covered are multiple-component series or parallel combinations of linear or nonlinear elements, packaged for the purpose of limiting voltage, current, or both. This standard is not intended to cover packaged single gas tube, air gap, varistor, or avalanche junction surge-protective devices, which are covered by IEEE Std C62.31 [B21], IEEE Std C62.32 [B22], IEEE Std C62.33 [B23], and IEEE Std C62.35 [B24], respectively. Keywords: communications circuits, current limiters, data circuits, electrical protection, IEEE C62.36, signaling circuits, surge protectors, surge- protective devices, voltage limiters.
Transients (Electricity) --- Electric surge --- Electric transient phenomena --- Surge (Electricity) --- Electric apparatus and appliances --- Electric currents --- Electric waves --- Lightning --- Oscillators, Electric --- Protection --- Standards. --- Electric circuits
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Workable methods for protecting wire-line telecommunication circuits entering electric supply locations are presented. The electric supply location environment; protection apparatus; service types, reliability, service performance objective classifications, and transmission considerations; protection theory and philosophy; protection configurations; installation and inspection; and safety are covered in this document. Keywords: electric supply locations, high-voltage tower, IEEE 487.1, power stations, protection, wire-line telecommunication.
Transients (Electricity) --- Electric surge --- Electric transient phenomena --- Surge (Electricity) --- Electric apparatus and appliances --- Electric currents --- Electric waves --- Lightning --- Oscillators, Electric --- Protection --- Standards.
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Strong pulsed magnetic fields are important for several fields in physics and engineering, such as power generation and accelerator facilities. Basic aspects of the generation of strong and superstrong pulsed magnetic fields technique are given, including the physics and hydrodynamics of the conductors interacting with the field as well as an account of the significant progress in generation of strong magnetic fields using the magnetic accumulation technique. Results of computer simulations as well as a survey of available field technology are completing the volume.
Electromagnetic fields --- Transients (Electricity) --- Electric surge --- Electric transient phenomena --- Surge (Electricity) --- Electric apparatus and appliances --- Electric currents --- Electric waves --- Lightning --- Oscillators, Electric --- Fields, Electromagnetic --- Magnetic fields --- Electric fields --- Mathematics. --- Protection --- Computer Simulation. --- Pulsed Magnetic Fields. --- Technology.
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Presenting state-of-the-art research into methods of wireless spectrum allocation based on game theory and mechanism design, this innovative and comprehensive book provides a strong foundation for the design of future wireless mechanisms and spectrum markets. Prominent researchers showcase a diverse range of novel insights and approaches to the increasing demand for limited spectrum resources, with a consistent emphasis on theoretical methods, analytical results and practical examples. Covering fundamental underlying principles, licensed spectrum sharing, opportunistic spectrum sharing, and wider technical and economic considerations, this singular book will be of interest to academic and industrial researchers, wireless industry practitioners, and regulators interested in the foundations of cutting-edge spectrum management.
Wireless communication systems --- Radio frequency allocation. --- Signal theory (Telecommunication) --- Game theory. --- Management. --- Games, Theory of --- Theory of games --- Mathematical models --- Mathematics --- Electric signal theory --- Electric waves --- Signal detection --- Telecommunication --- Resource allocation --- International cooperation
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This book explains how to create opto-electronic systems in a most efficient way, avoiding typical mistakes. It covers light detection techniques, imaging, interferometry, spectroscopy, modulation-demodulation, heterodyning, beam steering, and many other topics common to laboratory applications. The focus is made on self-explanatory figures rather than on words. The book guides the reader through the entire process of creating problem-specific opto-electronic systems, starting from optical source, through beam transportation optical arrangement, to photodetector and data acquisition system. The relevant basics of beam propagation and computer-based raytracing routines are also explained, and sample codes are listed. the book teaches important know-how and practical tricks that are never disclosed in scientific publications. The book can become the reader's personal adviser in the world of opto-electronics and navigator in the ocean of the market of optical components and systems. Succinct, well-illustrated, and clearly written, this book is helpful for students, postgraduates, engineers and researches working not only in the field of applied optics but also in high-tech industry, information technology, medicine, biology and other domains.
Optoelectronics --- Electronics --- Photonics --- Microwaves. --- Optics, Lasers, Photonics, Optical Devices. --- Microwaves, RF and Optical Engineering. --- Classical Electrodynamics. --- Hertzian waves --- Electric waves --- Electromagnetic waves --- Geomagnetic micropulsations --- Radio waves --- Shortwave radio --- Lasers. --- Photonics. --- Optical engineering. --- Optics. --- Electrodynamics. --- Dynamics --- Physics --- Light --- Mechanical engineering --- New optics --- Optics --- Light amplification by stimulated emission of radiation --- Masers, Optical --- Optical masers --- Light amplifiers --- Light sources --- Optoelectronic devices --- Nonlinear optics --- Optical parametric oscillators
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This book presents an innovative concept for the realization of sensors based on a planar metamaterial microwave array and shows their application in biomedical analysis and treatment. The sensors are able to transduce the dielectric properties of materials in their direct vicinity into an electric signal. The specific array organization permits a simultaneous analysis of several materials using a single readout signal or a relative characterization of one material where information about its spatial distribution can be extracted. Two applications of the designed sensors are described here: the first is a cytological screening using micro fluidic technology, which shows that the sensors may be integrated into lab-on-chip technologies; the second application regards the use of the sensor in both the analysis and treatment of organic tissues. The developed sensor is able not only to screen the tissues for abnormalities, but also, by changing the applied signals, to perform thermal ablation and treat the abnormalities in a highly focused way. Thus, the research described in this book represents a considerable advancement in the field of biomedical microwave sensing. .
Metamaterials --- Microwaves --- Biology --- Research. --- Biological research --- Biomedical research --- Hertzian waves --- Electric waves --- Electromagnetic waves --- Geomagnetic micropulsations --- Radio waves --- Shortwave radio --- Meta materials --- Composite materials --- Electromagnetism --- Microwaves. --- Optical materials. --- Biomedical engineering. --- Microwaves, RF and Optical Engineering. --- Optical and Electronic Materials. --- Biomedical Engineering and Bioengineering. --- Clinical engineering --- Medical engineering --- Bioengineering --- Biophysics --- Engineering --- Medicine --- Optics --- Materials --- Optical engineering. --- Electronic materials. --- Electronic materials --- Mechanical engineering
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