Yutang Chen
Orcid: 0000-0003-4669-5074
According to our database1,
Yutang Chen authored at least 11 papers
between 2023 and 2026.
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Bibliography
2026
A High-Efficiency Wireless Power Transfer System Under Wide Coupling Coefficient Range Based on Phase Shift and Near-Zero-Time Detection.
IEEE J. Solid State Circuits, January, 2026
An Output-Domain-Independent Single-Transmitter-Dual-Receiver Wireless Power Transfer System with Detuned-Tank and Time-Multiplexing Control for Adaptive Power Distribution.
Proceedings of the IEEE International Solid-State Circuits Conference, 2026
A Wireless Power Transfer System with Up-to-30% Efficiency Improvement based on Fully-On/Off Global Power Control and Energy Recycling.
Proceedings of the IEEE International Symposium on Circuits and Systems, 2026
2025
An Efficient Filter Implementation Method and Its Applications in Topology Optimization Utilizing k-d Tree Data Structure.
Comput., 2025
2024
An Adaptive On-Off-Delay Compensation Scheme Based on Dead-Time and Rectified-Current Sampling for Ampere-Current-Level Series-Series Wireless Power Receivers.
IEEE Trans. Circuits Syst. I Regul. Pap., October, 2024
A Framework of the Meshless Method for Topology Optimization Using the Smooth-Edged Material Distribution for Optimizing Topology Method.
Comput., 2024
27.5 A Wireless Power Transfer System with Up-to-27.9% Efficiency Improvement under Coupling Coefficient Ranging from 0.1 to 0.39 Based on Phase-Shift/Time-Constant Detection and Hybrid Transmission Power Control.
Proceedings of the IEEE International Solid-State Circuits Conference, 2024
A Fast-Settling Hybrid Adaptive On-Off-Delay Compensation for Series-Series Wireless Power Receivers.
Proceedings of the IEEE International Conference on Integrated Circuits, 2024
A 1.2-μA SIMO DC-DC Converter with 0.04-mV/mA Cross Regulation under Simultaneous Multi-Channel Loading Transition.
Proceedings of the IEEE International Conference on Integrated Circuits, 2024
2023
An Instant-Setup On-Delay Compensation Scheme Based on Phase Detection for Series-Resonant Wireless Power Receiver with Up-to-4.41% Efficiency Enhancement.
Proceedings of the IEEE Asian Solid-State Circuits Conference, 2023
A 2-W, 90%-Efficiency Single-Stage Dual-Output Wireless Power Receiver with 0.1 to 700-mA Output Current Range Through Dynamic Delay Compensation and Bootstrap Adaptive Body Biasing Circuit.
Proceedings of the IEEE Asian Solid-State Circuits Conference, 2023