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Monolithic GaN-Based Multiple-Phase Bidirectional Energy Transfer With Seamless Control Applied on High-Voltage and Low-Voltage Batteries
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Monolithic GaN-Based Multiple-Phase Bidirectional Energy Transfer With Seamless Control Applied on High-Voltage and Low-Voltage Batteries

IEEE transactions on circuits and systems. I, Regular papers, 卷.72(1), 頁碼.420-432
01/01/2025
Web of Science ID: WOS:001367300100001

摘要

Circuits Discharges (electric) dual GCR Dynamic ramp generator Energy exchange GaN controlled rectifier (GCR) Generators Inductors low quiescent error amplifier (low-IQ EA) Low voltage MP bidirectional dual GCR MP-accelerated current control seamless control third quadrant operation Threshold voltage Transient analysis Voltage control Batteries
In this paper, the proposed multi-phase (MP) bidirectional dual Gallium-Nitride (GaN) controlled rectifier (GCR) uses dual GCR with the pre-charge technique to reduce third quadrant operation by minimizing dead time to 0.12ns and 0.13ns, and lowering the negative VDS to −0.6V and −0.8V in buck and boost operation, respectively. This work is the first research for monolithic bidirectional energy transfer with a two-switch-only topology. With the help of MP-accelerated current control and the GCR dynamic ramp generator, the voltage variation on the high-voltage (HV) side and low-voltage (LV) side can be reduced to less than 50mV and to 40mV, respectively, during buck and boost operation transitions. Moreover, the recovery time is effectively reduced and current balance between the four phases can be achieved within 7 cycles (=350ns). The peak efficiency is as high as 95.5% and 94.2% in buck and boost operation, respectively.

相關連結

InCites亮點

本研究成果之相關指標(擷取自 InCites Benchmarking & Analytics)

合作類型
產業合作
機構合作
引用書目主題
4 Electrical Engineering, Electronics & Computer Science
4.18 Power Systems & Electric Vehicles
4.18.334 Converter Technologies
Web Of Science研究領域
Engineering, Electrical & Electronic
ESI研究領域
Engineering

聯合國永續發展目標(SDGs)

此研究成果有助於達成以下目標:

#7 Affordable and Clean Energy

來源:來自InCites的SDGs

詳細資料

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