Current-Fed Bidirectional DC-DC Converter Topology for Wireless Charging System Electrical Vehicle Applications
This paper compares the efficiency of a modified wireless power transfer (WPT) system with a current-fed dual-active half-bridge converter topology and a complete bridge converter topology for a current-fed resonate compensation network with current sharing and voltage doubler. Full-bridge topologie...
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Published in | Wireless communications and mobile computing Vol. 2021; no. 1 |
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Main Authors | , , , , , , |
Format | Journal Article |
Language | English |
Published |
Oxford
Hindawi
2021
Hindawi Limited |
Subjects | |
Online Access | Get full text |
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Abstract | This paper compares the efficiency of a modified wireless power transfer (WPT) system with a current-fed dual-active half-bridge converter topology and a complete bridge converter topology for a current-fed resonate compensation network with current sharing and voltage doubler. Full-bridge topologies are widely used in current WPT structures. The C-C-L resonate compensation networks for dual-active half-bridge converter and full-bridge converter topologies are built in this paper on both the transmitter and receiver sides. Due to higher voltage stress around inverter switches, series-parallel (S-P) tanks are not recommended for current-fed topologies because they are not ideal for medium power applications. A series capacitor is connected to reduce the reactive power absorbed by the loosely coupled coil. As a consequence, the C-C-L network is used as a compensation network. Dual-active half-bridge topology is chosen over full-bridge topology due to the system’s component count and overall cost. Soft-switching of the devices is obtained for the load current. The entire system is modelled, and the effects are analysed using MATLAB simulation. |
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AbstractList | This paper compares the efficiency of a modified wireless power transfer (WPT) system with a current-fed dual-active half-bridge converter topology and a complete bridge converter topology for a current-fed resonate compensation network with current sharing and voltage doubler. Full-bridge topologies are widely used in current WPT structures. The C-C-L resonate compensation networks for dual-active half-bridge converter and full-bridge converter topologies are built in this paper on both the transmitter and receiver sides. Due to higher voltage stress around inverter switches, series-parallel (S-P) tanks are not recommended for current-fed topologies because they are not ideal for medium power applications. A series capacitor is connected to reduce the reactive power absorbed by the loosely coupled coil. As a consequence, the C-C-L network is used as a compensation network. Dual-active half-bridge topology is chosen over full-bridge topology due to the system’s component count and overall cost. Soft-switching of the devices is obtained for the load current. The entire system is modelled, and the effects are analysed using MATLAB simulation. |
Author | Diwakaran, S. Gurusamy, Saravanakumar Thilagaraj, M. Subudhi, Partha Sarathi Naveen, P. Sundar Ganesh, C. S. Pallikonda Rajasekaran, M. |
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Copyright | Copyright © 2021 Partha Sarathi Subudhi et al. Copyright © 2021 Partha Sarathi Subudhi et al. This work is licensed under http://creativecommons.org/licenses/by/4.0/ (the “License”). Notwithstanding the ProQuest Terms and Conditions, you may use this content in accordance with the terms of the License. |
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Snippet | This paper compares the efficiency of a modified wireless power transfer (WPT) system with a current-fed dual-active half-bridge converter topology and a... This paper compares the efficiency of a modified wireless power transfer (WPT) system with a current‐fed dual‐active half‐bridge converter topology and a... |
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SubjectTerms | Compensation Current sharing Efficiency Electric bridges Electric converters Electric vehicle charging Electric vehicles Manufacturing Network topologies Reactive power Voltage converters (DC to DC) Voltage doublers Wireless networks Wireless power transmission |
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Title | Current-Fed Bidirectional DC-DC Converter Topology for Wireless Charging System Electrical Vehicle Applications |
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