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Book
Distribution Power Systems and Power Quality
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Year: 2020 Publisher: Basel, Switzerland MDPI - Multidisciplinary Digital Publishing Institute

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Abstract

High penetration of fluctuating renewable power units, such as wind turbines and photo voltaic systems, and new heavy loads, such as electrical vehicles and heat pumps, which so far might not be controlled according to the actual distribution grid condition, but rather according to actual consumption of the devices, influences the distribution grid in several ways, and it may lead to voltage disturbances, frequency deviations and harmonic content beyond limits. Over voltages might be generated at power production which is too high, whereas under voltage might occur at heavy load situations; both phenomena might be seen at the same distribution radial, where harmonic injections can also come from the devices, if equipped with power converters. This has led to the main target object for this book being power quality in distribution grids. This book offers 10 papers regarding power quality issues at distribution grids. It looks into hosting capacity issues, stability analysis, reliability assessment, mitigation of voltage rise using reactor installation, power quality assessments, harmonic analysis and damping, frequency control in weak and isolated power systems, and the focus is therefore broad within the overall topic of power quality.

Keywords

History of engineering & technology --- meshed DC distributed power systems --- stability criterion --- virtual harmonic resistance --- stability enhancement --- waveform distortion --- high-frequency spectral components --- wavelet transform --- modified estimation of signal parameters by rotational invariancetechnique (ESPRIT) --- power quality --- transient power quality --- S-transform --- width factor --- feature extraction --- probabilistic neural network (PNN) --- renewable energy --- reactor --- voltage rise --- distribution line --- distribution resource --- grid connection --- generator --- power factor --- coordination of protection relay --- active damping --- DC distributed systems --- dynamic performance --- impedance decoupling --- impedance overlap --- minor loop gain --- non-causal system --- stability margins --- modular multilevel converter --- double-carrier phase-disposition pulse width modulation --- double Fourier integral analysis --- harmonic characteristic --- carrier displacement angle --- harmonic responsibilities assessment --- utility harmonic impedance changes --- wavelet packet transform --- piecewise approach --- bound constrained optimization --- hosting capacity --- solar power integration --- electric vehicle integration --- electricity distribution --- distribution-system planning --- wind-diesel power systems --- power system modeling --- variable-speed wind turbine --- frequency control --- stability analysis --- wind power curtailment --- inertial control --- photovoltaic power stations --- power systems reliability --- non-aggregate Markov model --- pseudo-sequential Monte Carlo simulation --- intelligent state space reduction --- meshed DC distributed power systems --- stability criterion --- virtual harmonic resistance --- stability enhancement --- waveform distortion --- high-frequency spectral components --- wavelet transform --- modified estimation of signal parameters by rotational invariancetechnique (ESPRIT) --- power quality --- transient power quality --- S-transform --- width factor --- feature extraction --- probabilistic neural network (PNN) --- renewable energy --- reactor --- voltage rise --- distribution line --- distribution resource --- grid connection --- generator --- power factor --- coordination of protection relay --- active damping --- DC distributed systems --- dynamic performance --- impedance decoupling --- impedance overlap --- minor loop gain --- non-causal system --- stability margins --- modular multilevel converter --- double-carrier phase-disposition pulse width modulation --- double Fourier integral analysis --- harmonic characteristic --- carrier displacement angle --- harmonic responsibilities assessment --- utility harmonic impedance changes --- wavelet packet transform --- piecewise approach --- bound constrained optimization --- hosting capacity --- solar power integration --- electric vehicle integration --- electricity distribution --- distribution-system planning --- wind-diesel power systems --- power system modeling --- variable-speed wind turbine --- frequency control --- stability analysis --- wind power curtailment --- inertial control --- photovoltaic power stations --- power systems reliability --- non-aggregate Markov model --- pseudo-sequential Monte Carlo simulation --- intelligent state space reduction


Book
Power Electronics and Power Quality
Author:
ISBN: 3039283596 3039283588 Year: 2020 Publisher: MDPI - Multidisciplinary Digital Publishing Institute

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Abstract

Power quality (PQ) is receiving more and more attention from consumers, distribution system operators, transmission system operators, and other entities related to electrical power systems. As PQ problems have direct implications for business productivity, causing high economic losses, the research and development monitoring technologies and power electronics solutions that ensure the PQ of the power systems are matters of utmost importance. This book is a collection of high quality papers published in the “Power Electronics and Power Quality” Special Issue of the journal Energies. It reflects on the latest investigations and the new trends in this field.

Keywords

p-q theory --- Pulse Width Modulation (PWM) --- power system protection --- modeling --- comtrade --- space vector modulation (SVM) --- propulsion inverter control system position estimator --- frequency adaption --- wavelet transform --- Simulink --- SGDFT --- indirect matrix converter (IMC) --- hysteresis current control --- switching transients --- input power factor --- high speed maglev --- harmonics --- optimization --- robust control --- protection relay --- variation in voltage --- FBMMC --- MMC --- microinverter --- digital control --- state-space model --- four-leg inverter --- phase-leading capacitor --- histogram --- pulse width modulation --- energy shaping passivity (ESP)-based control --- time multiplier setting (TMS) --- reactive power --- continuous particle swarm optimization (CPSO) --- power control --- microgrid (MG) --- passive method --- Matlab --- voltage control --- switching frequency --- Field Programmable Gate Array (FPGA) --- Omicron CMC 256plus --- distance protection --- low voltage direct-current residential microgrid --- Full-bridge --- series active filter --- static var compensator --- photovoltaic systems --- Total Harmonic Distortion (THD) --- long-stator synchronous motor --- SC --- constant power load --- CSC --- superconducting magnetic energy storage (SMES) --- hybrid power filter --- renewable power generation --- Lagrange-interpolation method --- multilevel converter --- multi-grounded neutral (MGN) system --- temperature --- computer simulation --- thyristor-controlled reactor --- hybrid static var compensator --- static synchronous compensator --- power semiconductor device --- DC short-circuit handling --- cost-effectiveness --- current control --- half-bridge inverters --- Hybrid HVDC --- power inverter --- input filter --- machine learning --- enerlyzer --- matrix converter (MC) --- DC-DC converter --- Shunt Active Power Filter --- neutral integrity detection --- overcurrent relay coordination (OCR) --- power quality --- event detection --- voltage source inverter --- Multiterminal HVDC --- distorted grid conditions --- hybrid active filter --- primary neutral integrity


Book
Distribution Power Systems and Power Quality
Author:
Year: 2020 Publisher: Basel, Switzerland MDPI - Multidisciplinary Digital Publishing Institute

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Abstract

High penetration of fluctuating renewable power units, such as wind turbines and photo voltaic systems, and new heavy loads, such as electrical vehicles and heat pumps, which so far might not be controlled according to the actual distribution grid condition, but rather according to actual consumption of the devices, influences the distribution grid in several ways, and it may lead to voltage disturbances, frequency deviations and harmonic content beyond limits. Over voltages might be generated at power production which is too high, whereas under voltage might occur at heavy load situations; both phenomena might be seen at the same distribution radial, where harmonic injections can also come from the devices, if equipped with power converters. This has led to the main target object for this book being power quality in distribution grids. This book offers 10 papers regarding power quality issues at distribution grids. It looks into hosting capacity issues, stability analysis, reliability assessment, mitigation of voltage rise using reactor installation, power quality assessments, harmonic analysis and damping, frequency control in weak and isolated power systems, and the focus is therefore broad within the overall topic of power quality.

Keywords

History of engineering & technology --- meshed DC distributed power systems --- stability criterion --- virtual harmonic resistance --- stability enhancement --- waveform distortion --- high-frequency spectral components --- wavelet transform --- modified estimation of signal parameters by rotational invariancetechnique (ESPRIT) --- power quality --- transient power quality --- S-transform --- width factor --- feature extraction --- probabilistic neural network (PNN) --- renewable energy --- reactor --- voltage rise --- distribution line --- distribution resource --- grid connection --- generator --- power factor --- coordination of protection relay --- active damping --- DC distributed systems --- dynamic performance --- impedance decoupling --- impedance overlap --- minor loop gain --- non-causal system --- stability margins --- modular multilevel converter --- double-carrier phase-disposition pulse width modulation --- double Fourier integral analysis --- harmonic characteristic --- carrier displacement angle --- harmonic responsibilities assessment --- utility harmonic impedance changes --- wavelet packet transform --- piecewise approach --- bound constrained optimization --- hosting capacity --- solar power integration --- electric vehicle integration --- electricity distribution --- distribution-system planning --- wind-diesel power systems --- power system modeling --- variable-speed wind turbine --- frequency control --- stability analysis --- wind power curtailment --- inertial control --- photovoltaic power stations --- power systems reliability --- non-aggregate Markov model --- pseudo-sequential Monte Carlo simulation --- intelligent state space reduction


Book
Distribution Power Systems and Power Quality
Author:
Year: 2020 Publisher: Basel, Switzerland MDPI - Multidisciplinary Digital Publishing Institute

Loading...
Export citation

Choose an application

Bookmark

Abstract

High penetration of fluctuating renewable power units, such as wind turbines and photo voltaic systems, and new heavy loads, such as electrical vehicles and heat pumps, which so far might not be controlled according to the actual distribution grid condition, but rather according to actual consumption of the devices, influences the distribution grid in several ways, and it may lead to voltage disturbances, frequency deviations and harmonic content beyond limits. Over voltages might be generated at power production which is too high, whereas under voltage might occur at heavy load situations; both phenomena might be seen at the same distribution radial, where harmonic injections can also come from the devices, if equipped with power converters. This has led to the main target object for this book being power quality in distribution grids. This book offers 10 papers regarding power quality issues at distribution grids. It looks into hosting capacity issues, stability analysis, reliability assessment, mitigation of voltage rise using reactor installation, power quality assessments, harmonic analysis and damping, frequency control in weak and isolated power systems, and the focus is therefore broad within the overall topic of power quality.

Keywords

meshed DC distributed power systems --- stability criterion --- virtual harmonic resistance --- stability enhancement --- waveform distortion --- high-frequency spectral components --- wavelet transform --- modified estimation of signal parameters by rotational invariancetechnique (ESPRIT) --- power quality --- transient power quality --- S-transform --- width factor --- feature extraction --- probabilistic neural network (PNN) --- renewable energy --- reactor --- voltage rise --- distribution line --- distribution resource --- grid connection --- generator --- power factor --- coordination of protection relay --- active damping --- DC distributed systems --- dynamic performance --- impedance decoupling --- impedance overlap --- minor loop gain --- non-causal system --- stability margins --- modular multilevel converter --- double-carrier phase-disposition pulse width modulation --- double Fourier integral analysis --- harmonic characteristic --- carrier displacement angle --- harmonic responsibilities assessment --- utility harmonic impedance changes --- wavelet packet transform --- piecewise approach --- bound constrained optimization --- hosting capacity --- solar power integration --- electric vehicle integration --- electricity distribution --- distribution-system planning --- wind-diesel power systems --- power system modeling --- variable-speed wind turbine --- frequency control --- stability analysis --- wind power curtailment --- inertial control --- photovoltaic power stations --- power systems reliability --- non-aggregate Markov model --- pseudo-sequential Monte Carlo simulation --- intelligent state space reduction

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