2015
DOI: 10.1109/tpel.2014.2372774
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Single-Phase Grid-Connected LiFePO$_{\bf 4}$ Battery–Supercapacitor Hybrid Energy Storage System With Interleaved Boost Inverter

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Cited by 67 publications
(24 citation statements)
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“…Further, for investigating this topology a modified support vector machine (SVM) technique has been proposed to address the problems of dynamic voltage variations and unavoidable unbalanced conditions. Accordingly, a novel H-bridge based direct AC integration of HESS is investigated in [45][46][47]. The concept of direct AC integration is based on the fact it reduces the number of the power converters and eventually the power processing stages, reducing the power losses that comes with it and hence contributing to the increment of the system efficiency.…”
Section: Topologies Of Hybrid Energy Storage System and Its Applicationsmentioning
confidence: 99%
“…Further, for investigating this topology a modified support vector machine (SVM) technique has been proposed to address the problems of dynamic voltage variations and unavoidable unbalanced conditions. Accordingly, a novel H-bridge based direct AC integration of HESS is investigated in [45][46][47]. The concept of direct AC integration is based on the fact it reduces the number of the power converters and eventually the power processing stages, reducing the power losses that comes with it and hence contributing to the increment of the system efficiency.…”
Section: Topologies Of Hybrid Energy Storage System and Its Applicationsmentioning
confidence: 99%
“…The stability of the system in both cases was maintained, and the reactive power compensation by the inverter was not affected by the intermittency in the generation of active power. When the PV array fluctuated, the SC was utilized for smoothing out the power fluctuations [28], given that the supercapacitor had the ability to respond to fast PV power changes [29].…”
Section: Transitory Responsementioning
confidence: 99%
“…The aging of each cell is a function of thermal, voltage and cycling stresses as described in the aging model presented above. The lifetime presented in equations (1), (10) and (11) is divided by a factor of 10 in order to reduce the system's lifetime and accelerate the simulation.…”
Section: Supercapacitor I Modelingmentioning
confidence: 99%