![]() Its reliability, safety, cost, efficiency, weight, size, harmonics, and other factors are of essential importance for V2G realization, especially for on-board operations. As an energy interface between a vehicle and the grid, the bidirectional converter plays a crucial role in their interaction. Power Electron.In vehicle-to-grid (V2G) systems, electric vehicles interact with the grid as distributed energy storage systems that offer many potential benefits. Mirzaei Amin et al.: A fully soft-switched two quadrant bidirectional soft-switching converter for ultra-capacitor interface circuits. et al.: A new high efficiency ZVZCS Bidirectional DC/DC converter for HEV 42V power systems. In: International Conference on Electrical Machines and Systems, pp. Xiaozhong, L.: A new soft switching bidirectional buck or boost DC–DC converter. Yang J.-W., Do H.-L.: Soft-switching bidirectional DC–DC converter using a lossless active snubber. Jung, Y.-C.: Soft switching bidirectional DC–DC converter to reduce switching losses. Zhang, M.: A novel soft-switching bidirectional DC–DC converter with coupled inductors, In: Twenty-Eighth Annual IEEE Applied Power Electronics Conference and Exposition, pp. In: IEEE Applied Power Electronics Colloquium, pp. Farzanehfard, H.: A novel soft switching bidirectional coupled inductor buck + boost converter for battery discharging-charging. In: IEEE 8th International Conference on Power Electronics and ECCE Asia, pp. Jung, Y.-C.: The analysis of a novel bidirectional soft switching DC–DC converter. Pavlovsky M., Guidi G., Kawamura A.: Buck/boost DC–DC converter topology with soft switching in the whole operating region. Kolar, J.W.: Comparative evaluation of soft-switching concepts for bidirectional buck + boost converters, In: International Power Electronics Conference, pp.1856–1865 (2010) Waffler S., Kolar J.W.: A novel low-loss modulation strategy for high-power bidirectional buck boost converters. Choi, W.-Y.: High efficiency power conversion system for battery-ultracapacitor hybrid energy storages, In: Twenty-Eighth Annual IEEE Applied Power Electronics Conference and Exposition, pp. In: IEEE Transactions on Industry Applications, p. Badawy, M.: Performance analysis of bi-directional DC–DC converters for electric vehicles. In: IEEE 23rd International Symposium on Industrial Electronics, pp. , Khaligh, A.: Loss analysis of non-isolated bidirectional DC/DC converters for hybrid energy storage system in EVs. ![]()
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