Renewable Energy Devices and Systems With Simulations in MATLAB® and ANSYS® 2017
DOI: 10.1201/9781315367392-13
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Batteries and Ultracapacitors for Electric Power Systems with Renewable Energy Sources

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Cited by 5 publications
(4 citation statements)
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“…These systems, ranging from 20 kW to several milliwatts in size, can function as bridging power supplies to more permanent backup sources, such as gensets or fuel cells. Supercapacitor UPSs, known for their compactness, entail minimal maintenance and standby power costs, making them a pragmatic choice for applications requiring swift responses to short-term power disruptions [82][83][84][85][86].…”
Section: Critical Loadsmentioning
confidence: 99%
“…These systems, ranging from 20 kW to several milliwatts in size, can function as bridging power supplies to more permanent backup sources, such as gensets or fuel cells. Supercapacitor UPSs, known for their compactness, entail minimal maintenance and standby power costs, making them a pragmatic choice for applications requiring swift responses to short-term power disruptions [82][83][84][85][86].…”
Section: Critical Loadsmentioning
confidence: 99%
“…where, E is no-load voltage, E 0 is battery constant voltage, K is polarization voltage, Q is battery capacity, A is exponential zone amplitude, B is exponential zone time constant inverse and SOC is the battery state of charge. This model neglects factors such as temperature, self-discharge, charge and discharge history, which may be considered based on the specific published work of other researches [18,19].…”
Section: B Bessmentioning
confidence: 99%
“…Other researchers have worked towards developing standardized procedures for the estimation of the parameters of a single cell. [13]- [16].…”
Section: Introductionmentioning
confidence: 99%