2019 1st International Conference on Energy Transition in the Mediterranean Area (SyNERGY MED) 2019
DOI: 10.1109/synergy-med.2019.8764117
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A GaN-Based Battery Energy Storage System for Three-Phase Residential Application with Series-Stacked Devices and Three-Level Neutral Point Clamped Topology

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Cited by 3 publications
(4 citation statements)
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“…GaN devices have the lowest switching losses for the hard-switched applications; however, their current/voltage ratings (100 A/650 V) are even lower than those of SiC. To achieve the high efficiency of GaN devices and cope with their low current/voltage ratings, device paralleling and device series stack structure are proposed in [137,138], for the application of single-phase and three-phase residential BEES, respectively.…”
Section: Wbg Devices In Renewable Energy Systemsmentioning
confidence: 99%
“…GaN devices have the lowest switching losses for the hard-switched applications; however, their current/voltage ratings (100 A/650 V) are even lower than those of SiC. To achieve the high efficiency of GaN devices and cope with their low current/voltage ratings, device paralleling and device series stack structure are proposed in [137,138], for the application of single-phase and three-phase residential BEES, respectively.…”
Section: Wbg Devices In Renewable Energy Systemsmentioning
confidence: 99%
“…NN and support vector machine (SVM)-based [108] LIB temperature estimation strategy was investigated by Sbarufatti et al [109]. A hybrid model of an radial basis function neural network (RBFNN) and EKF was employed by Liu et al [110] to estimate the internal temperature of LIB. While they have considered the impact of temperature on cell behavior, the primary intention of these models was the estimation of SOC or SOH rather than estimating the cell temperature.…”
Section: Machine Learning-based Temperature Estimationmentioning
confidence: 99%
“…Besides, it is possible to synthesize 0 V level differently, providing different charge/discharge paths. The use of neutral point clamped converters in the BESS system is described in [110,111]. Reference [112] demonstrates the use of neutral point clamped and active neutral point clamped converters in BESSs.…”
Section: Neutral Point Clamped Multilevel Convertersmentioning
confidence: 99%
“…The main difference between multilevel converters with neutral point clamped and multilevel converters with flying capacitors (Figure 15c) is that instead of clamping diodes, capacitors are used. Similar to the diode-clamped topology, the main disadvantage of the multilevel inverter with flying capacitors is the large number of used capacitors, The use of neutral point clamped converters in the BESS system is described in [110,111]. Reference [112] demonstrates the use of neutral point clamped and active neutral point clamped converters in BESSs.…”
Section: Multilevel Inverter With Flying Capacitorsmentioning
confidence: 99%