Distribution Power Systems and Power Quality

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 consumptio...

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Year of Publication:2020
Language:English
Physical Description:1 electronic resource (212 p.)
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100 1 |a Bak-Jensen, Birgitte  |4 edt 
245 1 0 |a Distribution Power Systems and Power Quality 
260 |a Basel, Switzerland  |b MDPI - Multidisciplinary Digital Publishing Institute  |c 2020 
300 |a 1 electronic resource (212 p.) 
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520 |a 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. 
546 |a English 
650 7 |a History of engineering & technology  |2 bicssc 
653 |a meshed DC distributed power systems 
653 |a stability criterion 
653 |a virtual harmonic resistance 
653 |a stability enhancement 
653 |a waveform distortion 
653 |a high-frequency spectral components 
653 |a wavelet transform 
653 |a modified estimation of signal parameters by rotational invariancetechnique (ESPRIT) 
653 |a power quality 
653 |a transient power quality 
653 |a S-transform 
653 |a width factor 
653 |a feature extraction 
653 |a probabilistic neural network (PNN) 
653 |a renewable energy 
653 |a reactor 
653 |a voltage rise 
653 |a distribution line 
653 |a distribution resource 
653 |a grid connection 
653 |a generator 
653 |a power factor 
653 |a coordination of protection relay 
653 |a active damping 
653 |a DC distributed systems 
653 |a dynamic performance 
653 |a impedance decoupling 
653 |a impedance overlap 
653 |a minor loop gain 
653 |a non-causal system 
653 |a stability margins 
653 |a modular multilevel converter 
653 |a double-carrier phase-disposition pulse width modulation 
653 |a double Fourier integral analysis 
653 |a harmonic characteristic 
653 |a carrier displacement angle 
653 |a harmonic responsibilities assessment 
653 |a utility harmonic impedance changes 
653 |a wavelet packet transform 
653 |a piecewise approach 
653 |a bound constrained optimization 
653 |a hosting capacity 
653 |a solar power integration 
653 |a electric vehicle integration 
653 |a electricity distribution 
653 |a distribution-system planning 
653 |a wind-diesel power systems 
653 |a power system modeling 
653 |a variable-speed wind turbine 
653 |a frequency control 
653 |a stability analysis 
653 |a wind power curtailment 
653 |a inertial control 
653 |a photovoltaic power stations 
653 |a power systems reliability 
653 |a non-aggregate Markov model 
653 |a pseudo-sequential Monte Carlo simulation 
653 |a intelligent state space reduction 
776 |z 3-03936-250-X 
776 |z 3-03936-251-8 
700 1 |a Bak-Jensen, Birgitte  |4 oth 
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