研究目的
To develop a high-temperature superconducting (HTS) electrode capacitor based on double-sided YBCO thin film for wireless power transfer (WPT) applications and investigate its effect on the WPT system.
研究成果
The proposed HTS capacitor based on double-sided YBCO thin film has been found to provide a higher Q-factor than capacitors made from normal material, and this property would be more remarkable at a lower frequency. The HTS capacitor can enhance the WPT efficiency and avoid the cooperation dilemma between the HTS coil and normal capacitor.
研究不足
The operating frequency of the capacitor is limited to its self-resonant frequency. The HTS capacitor has a higher Q-factor at 77 K but a lower one at normal temperature or at a higher frequency.
1:Experimental Design and Method Selection:
The study involves the fabrication and characterization of an HTS capacitor based on double-sided YBCO thin film. The methodology includes measuring the effective capacitance, ESR, and Q-factor of the capacitor under different conditions.
2:Sample Selection and Data Sources:
The main component of the HTS capacitor prototype is a 2-inch diameter double-sided YBCO thin film. Comparative experiments were carried out between the HTS capacitor and two contrasting capacitors.
3:List of Experimental Equipment and Materials:
The HTS capacitor is based on double-sided YBCO thin film whose substrate is LaAlO3 with a low loss tangent. Surface gold (Au) coatings are used to protect the YBCO layers.
4:Experimental Procedures and Operational Workflow:
The impedance of the capacitor under test is measured by VNA. Then, the effective capacitance, ESR, and Q-factor can be obtained based on the measured impedance.
5:Data Analysis Methods:
The Q-factor of the capacitor is calculated based on the measured impedance by dividing the imaginary part to the real part.
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