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Signal processing - Mathematics. --- Wigner distribution. --- Signal processing
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Random matrices. --- Wigner distribution. --- Integrals, Stieltjes. --- Matrices aléatoires. --- Wigner, Distribution de. --- Stieltjes, Intégrales de. --- Functions of complex variables. --- Integral equations. --- Analytic functions. --- Vector algebra --- Algebra, Vector --- Algebras, Linear --- Vector analysis
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Ray, wave and quantum concepts are central to diverse and seemingly incompatible models of light. Each model particularizes a specific ''manifestation'' of light, and then corresponds to adequate physical assumptions and formal approximations, whose domains of applicability are well-established. Accordingly each model comprises its own set of geometric and dynamic postulates with the pertinent mathematical means.At a basic level, the book is a complete introduction to the Wigner optics, which bridges between ray and wave optics, offering the optical phase space as the ambience and the
Wave theory of light. --- Wigner distribution. --- Geometrical optics --- Mathematics. --- Optics, Geometrical --- Optics --- Distribution (Probability theory) --- Racah algebra --- Light, Wave theory of --- Wave-motion, Theory of --- Wave-particle duality
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This book is designed to give a background on the origins and development of Wigner functions, as well as its mathematical underpinnings. Along the way the authors emphasise the connections, and differences, from the more popular non-equilibrium Green's function approaches. But, the importance of the text lies in the discussions of the applications of the Wigner function in various fields of science, including quantum information, coherent optics, and superconducting qubits. These disciplines approach it differently, and the goal here is to give a unified background and highlight how it is utilized in the different disciplines.
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Chaotic behavior in systems --- Geometric quantization --- Nonlinear theories --- Phase space (Statistical physics) --- Wigner distribution --- Chaos --- Quantification géométrique --- Théories non linéaires --- Espace des phases (Physique statistique) --- Wigner, Distribution de --- Congresses --- Congrès --- 530.161 <063> --- Principle of order in sequence of phenomena. Irreversibility. Heat death--Congressen --- 530.161 <063> Principle of order in sequence of phenomena. Irreversibility. Heat death--Congressen --- Quantification géométrique --- Théories non linéaires --- Congrès --- Congresses.
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PV power plant integration into the grid has been a relevant topic of interest over the last years. Policies supported by governments, technology maturity, favorable incentives, and cost decreasing have significantly promoted the integration of PV power plants into power systems at the transmission and distribution levels. Nevertheless, some barriers remain in terms of forecasting generation, grid reliability, and power quality, which must be overcome for the massive PV integration into future power systems. Additionally, the ancillary services provided by these generation units are increasingly required by different agents to facilitate grid operation under a high proportion of renewables. Topics of interest for this Special Issue include the following areas: large-scale PV power plants, energy policies related to PV power plants, grid integration and interaction, PV power plant modeling, monitoring and case studies, communication systems for PV power plants integration, economic analyses, PV inverters and sizing analyses, new trends in PV technologies, and reviews.
History of engineering & technology --- incident solar radiation --- PV output power modelling --- tilt angle --- orientation --- rooftop solar --- PV generator --- power ramping --- battery energy storage --- duck curve --- hybrid dc/ac grids --- alienation coefficient --- hybrid power system network --- protection --- power system fault --- solar energy --- wind energy --- Wigner distribution function --- ancillary service --- PV Plant --- frequency-assisting --- hardware-in-the-loop --- Photovoltaic --- DER --- energy policies related to PV power plants --- economic analyses --- monitoring and case studies --- distribution network --- hierarchical voltage control --- reactive power control --- RES --- SVR --- PV --- optimal design --- photovoltaic power plants --- hybrid optimisation --- LCOE --- PV module reduction --- photovoltaic systems --- synchronization systems --- phase-locked loops --- islanding detection methods
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PV power plant integration into the grid has been a relevant topic of interest over the last years. Policies supported by governments, technology maturity, favorable incentives, and cost decreasing have significantly promoted the integration of PV power plants into power systems at the transmission and distribution levels. Nevertheless, some barriers remain in terms of forecasting generation, grid reliability, and power quality, which must be overcome for the massive PV integration into future power systems. Additionally, the ancillary services provided by these generation units are increasingly required by different agents to facilitate grid operation under a high proportion of renewables. Topics of interest for this Special Issue include the following areas: large-scale PV power plants, energy policies related to PV power plants, grid integration and interaction, PV power plant modeling, monitoring and case studies, communication systems for PV power plants integration, economic analyses, PV inverters and sizing analyses, new trends in PV technologies, and reviews.
incident solar radiation --- PV output power modelling --- tilt angle --- orientation --- rooftop solar --- PV generator --- power ramping --- battery energy storage --- duck curve --- hybrid dc/ac grids --- alienation coefficient --- hybrid power system network --- protection --- power system fault --- solar energy --- wind energy --- Wigner distribution function --- ancillary service --- PV Plant --- frequency-assisting --- hardware-in-the-loop --- Photovoltaic --- DER --- energy policies related to PV power plants --- economic analyses --- monitoring and case studies --- distribution network --- hierarchical voltage control --- reactive power control --- RES --- SVR --- PV --- optimal design --- photovoltaic power plants --- hybrid optimisation --- LCOE --- PV module reduction --- photovoltaic systems --- synchronization systems --- phase-locked loops --- islanding detection methods
Choose an application
PV power plant integration into the grid has been a relevant topic of interest over the last years. Policies supported by governments, technology maturity, favorable incentives, and cost decreasing have significantly promoted the integration of PV power plants into power systems at the transmission and distribution levels. Nevertheless, some barriers remain in terms of forecasting generation, grid reliability, and power quality, which must be overcome for the massive PV integration into future power systems. Additionally, the ancillary services provided by these generation units are increasingly required by different agents to facilitate grid operation under a high proportion of renewables. Topics of interest for this Special Issue include the following areas: large-scale PV power plants, energy policies related to PV power plants, grid integration and interaction, PV power plant modeling, monitoring and case studies, communication systems for PV power plants integration, economic analyses, PV inverters and sizing analyses, new trends in PV technologies, and reviews.
History of engineering & technology --- incident solar radiation --- PV output power modelling --- tilt angle --- orientation --- rooftop solar --- PV generator --- power ramping --- battery energy storage --- duck curve --- hybrid dc/ac grids --- alienation coefficient --- hybrid power system network --- protection --- power system fault --- solar energy --- wind energy --- Wigner distribution function --- ancillary service --- PV Plant --- frequency-assisting --- hardware-in-the-loop --- Photovoltaic --- DER --- energy policies related to PV power plants --- economic analyses --- monitoring and case studies --- distribution network --- hierarchical voltage control --- reactive power control --- RES --- SVR --- PV --- optimal design --- photovoltaic power plants --- hybrid optimisation --- LCOE --- PV module reduction --- photovoltaic systems --- synchronization systems --- phase-locked loops --- islanding detection methods
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