Power Quality in Power Systems and Electrical Machines 2015
DOI: 10.1016/b978-0-12-800782-2.00003-8
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Modeling and Analysis of Induction Machines

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Cited by 5 publications
(4 citation statements)
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“…Regarding the analysis of the distorting regime, this corresponds to harmonic disturbances. Currently, the proportion of nonlinear equipment (such as photovoltaic systems for energy production, high-efficiency lighting fixtures, electric vehicle charging stations) exceeds that of linear equipment [14][15][16][17]. Electric distribution transformers represent one of the most important classes of equipment analyzed in the field of electrical power quality.…”
Section: Specific Distinctions Between Standardsmentioning
confidence: 99%
“…Regarding the analysis of the distorting regime, this corresponds to harmonic disturbances. Currently, the proportion of nonlinear equipment (such as photovoltaic systems for energy production, high-efficiency lighting fixtures, electric vehicle charging stations) exceeds that of linear equipment [14][15][16][17]. Electric distribution transformers represent one of the most important classes of equipment analyzed in the field of electrical power quality.…”
Section: Specific Distinctions Between Standardsmentioning
confidence: 99%
“…0.9 to 1.1 p.u.) [78]. The main drivers for voltage variations are high DER penetration and the number of simultaneous energy transactions between prosumers.…”
Section: Voltage Variationsmentioning
confidence: 99%
“…The induction motor never runs at the unity power factor due to which it exhibits several types of losses thereby dropping the voltage of the system. When the induction motor runs at power factor lower than 1, it draws high current from the power source [6]. This high current flowing in the coil of induction motor will reduce the performance and efficiency by creating heat inside it.…”
Section: Working Of Induction Motor At Low Power Factormentioning
confidence: 99%