Zobrazeno 1 - 6
of 6
pro vyhledávání: '"Feiqing Wu"'
Autor:
Ping Yu, Huiye Qiu, Wanjun Wang, Ting Hu, Hui Yu, Zhuoyuan Wang, Feiqing Wu, Xiaoqing Jiang, Jianyi Yang
Publikováno v:
IEEE Photonics Journal, Vol 8, Iss 5, Pp 1-10 (2016)
Single silicon nanobeam photonic crystal cavity based sensors are systematically analyzed and designed. By using perturbation theory and numerical simulations, both dielectric-mode and air-mode cavities are extensively investigated in terms of sensit
Externí odkaz:
https://doaj.org/article/fbe29d4affb64071b71ed7786712d19d
Publikováno v:
E3S Web of Conferences, Vol 268, p 01059 (2021)
Electrical and electronic experiment teaching is an indispensable and important part of engineering teaching. Oscilloscope is an indispensable experimental instrument in the teaching of these experiments, which is used to measure the electrical signa
Autor:
Wang Zhuoyuan, Hui Yu, Xiaoqing Jiang, Ting Hu, Huiye Qiu, Wanjun Wang, Jianyi Yang, Feiqing Wu, Ping Yu
Publikováno v:
IEEE Photonics Journal, Vol 8, Iss 5, Pp 1-10 (2016)
Single silicon nanobeam photonic crystal cavity based sensors are systematically analyzed and designed. By using perturbation theory and numerical simulations, both dielectric-mode and air-mode cavities are extensively investigated in terms of sensit
Publikováno v:
ICIA
this paper presents a new electric vehicle (EV) charging technology which can realize dynamic EV charging in the running process. Its principle is that the travelling magnetic field generated by the symmetrical alternating currents in the stator wind
Autor:
Wentai Qu, Feiqing Wu
Publikováno v:
ICIA
The brushless DC motor (BLDCM) is mostly used as the In-Wheel-motor of distributed-driven electric vehicles. Due to operating environment harsh, the BLDCM-EV frequently is in the trouble of single-winding-broken-fault (SWBF). Once the SWBF occurs, it
Publikováno v:
IEEE Photonics Technology Letters. :1-1
We demonstrate the design, fabrication, and characterization of side-coupled airmode nanobeam photonic crystal cavities in silicon-on-insulator platform. Results show that repeatable devices achieve similar high loaded quality factors ( $> 10^{4}$ )