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A 5.8-GHz GaN High-Power Rectifier With Harmonic-Compression Network for Space-Based Wireless Power Transmission
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A 5.8-GHz GaN High-Power Rectifier With Harmonic-Compression Network for Space-Based Wireless Power Transmission

Xiaochen Yu, Haoran Wang, Ta-Jen Yen, Xiantao Yang, Shawn S. H. Hsu, Furong Yang, Jinyao Zhang, Yejun He, Chaoyun Song, Yi Huang, …
IEEE Journal on Wireless Power Technologies, 卷.1, 0400114
2026

摘要

Gallium nitride GaN harmonic compression Impedance Junctions microwave rectifier Power harmonic filters Radio frequency Rectifiers Resistance Schottky barrier diode Schottky diodes space solar power Threshold voltage wireless power transfer Harmonic Analysis
This paper presents the design, fabrication and experimental validation of a high-power and high-efficiency 5.8 GHz voltage-doubling rectifier for wireless power transfer (WPT) in space-based solar power (SBSP) systems. The proposed rectifier leverages a custom-developed GaN-on-SiC Schottky barrier diode (SBD) and a harmonic compression circuit topology to simultaneously achieve watt-level power handling and superior efficiency. The proposed GaN SBD features a Y-shaped anode geometry, yielding a superior breakdown voltage exceeding 200 V, an ultra-low zero-bias junction capacitance of 0.34 pF, a threshold voltage of 1.25 V and a series resistance of 11 \Omega (specific on-resistance R_{\mathrm{on,sp}} = 3.87 \Omega \cdot mm) and maintains stable performance at elevated temperatures up to 400 K. These characteristics facilitate efficient rectification under high input power conditions. At the circuit level, two one-eighth-wavelength microstrip transmission lines form a harmonic compression network that provides a DC path, in-band reactive compensation and second-harmonic suppression, thereby eliminating the requirement for conventional LC filters. Experimental results demonstrated a peak RF-to-DC conversion efficiency of 73.3% at an input power level of 40 dBm . These results verify that co-optimizing the GaN device and the circuit topology enables scalable and efficient microwave power conversion for high-power SBSP WPT systems.

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