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Documents dont l'auteur est "Wang, Kuangda"

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Nombre de documents: 20

A

Adhikari, S., Ghiotto, A., Wang, K., & Wu, K. (2013). Development of a large-signal-network-analyzer round-robin artifact. IEEE Microwave Magazine, 14(1), 140-145. Lien externe

B

Barmuta, P., Ribeiro, D., Wang, K., Avolio, G., Rajabi, M., Lewandowski, A., Gibiino, G. P., Szatkowski, J., Schreurs, D., Hale, P., Remley, K., & Williams, D. (2016). Comparing LSNA Calibrations: Large-Signal Network Analyzer Round Robin. IEEE Microwave Magazine, 17(2), 59-64. Lien externe

C

Chu, P., Hong, W., Wang, K., Tang, H., Hao, Z., Chen, J., & Wu, K. (2014). Balanced substrate integrated waveguide filter. IEEE Transactions on Microwave Theory and Techniques, 62(4), 824-831. Lien externe

G

Gu, J.-F., Wang, K., & Wu, K. (2017). System architecture and signal processing for frequency-modulated continuous-wave radar using active backscatter tags. IEEE Transactions on Signal Processing, 66(9), 2258-2272. Lien externe

J

Jin, H., Wang, K., Guo, J., Ding, S., & Wu, K. (2016). Slow-wave effect of substrate integrated waveguide patterned with microstrip polyline. IEEE Transactions on Microwave Theory and Techniques, 64(6), 1717-1726. Lien externe

M

Moghaddasi, J., Wang, K., & Wu, K. (septembre 2015). Parametric characterization of six-port interferometer demodulator through mixer modeling [Communication écrite]. 45th European Microwave Conference (EuMC 2015), Paris, France. Lien externe

S

Stephan, M., Wang, K., Reissland, T., Weigel, R., Wu, K., & Lurz, F. (octobre 2019). Evaluation of antenna calibration and DOA estimation algorithms for FMCW radars [Communication écrite]. 49th European Microwave Conference (EuMC 2019), Paris, France. Lien externe

Stephan, M., Wang, K., Reissland, T., Weigel, R., Wu, K., & Lurz, F. (octobre 2019). Evaluation of Antenna Calibration and DOA Estimation Algorithms for FMCW Radars [Communication écrite]. 16th European Radar Conference (EuRAD 2019), Paris, France. Lien externe

W

Wang, K. (2020). Active Backscattering Positioning System Using Innovative Harmonic Oscillator Tags for Future Internet of Things: Theory and Experiments [Thèse de doctorat, Polytechnique Montréal]. Disponible

Wang, K., Ghiotto, A., Guo, L., Zhu, F., & Wu, K. (2020). A Low Pulling Effect Self-Isolated Harmonic Active Radiator for Millimeter-Wave Internet-of-Things Applications. IEEE Transactions on Antennas and Propagation, 68(1), 171-182. Lien externe

Wang, K., Ghiotto, A., Zhu, F., & Wu, K. (2019). Large-Signal Modeling and Experimental Design Automation of Self-Isolated Harmonic Oscillator for Pulling Effect Reduction. IEEE Transactions on Microwave Theory and Techniques, 67(4), 1566-1587. Lien externe

Wang, K., Gu, J.-F., Ren, F., & Wu, K. (2017). A Multitarget Active Backscattering 2-D Positioning System With Superresolution Time Series Post-Processing Technique. IEEE Transactions on Microwave Theory and Techniques, 65(5), 1751-1766. Lien externe

Wang, K., & Wu, K. (mai 2015). Liquid crystal enabled substrate integrated waveguide variable phase shifter for millimeter-wave application at 60ghz and beyond [Communication écrite]. IEEE MTT-S International Microwave Symposium (IMS 2015), Phoenix, AZ, United states. Lien externe

Wang, K., Ghiotto, A., & Wu, K. (juin 2014). Harmonic feedback-loop oscillator for pulling effect reduction and improved phase noise [Communication écrite]. IEEE MTT-S International Microwave Symposium (IMS 2014), Tampa Bay, Florida, USA. Lien externe

Wang, K., Adhikari, S., Ghiotto, A., & Wu, K. (2014). Multiharmonic generator for large-signal-network-analyzer verification. IEEE Microwave Magazine, 15(1), 120-128. Lien externe

Wang, K., Hong, W., & Wu, K. (septembre 2011). Broadband transition between substrate integrated waveguide (SIW) and rectangular waveguide for millimeter-wave applications [Communication écrite]. 3rd International Conference on Mechanical and Electronics Engineering (ICMEE 2011), Hefei, China. Non disponible

Z

Zhu, F., Wang, K., & Wu, K. (2019). Design Considerations for Image-Rejection Enhancement of Quadrature Mixers. IEEE Microwave and Wireless Components Letters, 29(3), 216-218. Lien externe

Zhu, F., Wang, K., & Wu, K. (mai 2019). Doppler radar techniques for vital signs detection featuring noise cancellation [Communication écrite]. IEEE MTT-S International Microwave Biomedical Conference (IMBioC 2019), Nanjing, China (4 pages). Lien externe

Zhu, F., Wang, K., & Wu, K. (2019). A reconfigurable low-voltage and low-power millimeter-wave dual-band mixer in 65-nm CMOS. IEEE Access, 7, 33359-33368. Disponible

Zhu, F., Wang, K., & Wu, K. (2018). A Fundamental-and-Harmonic Dual-Frequency Doppler Radar System for Vital Signs Detection Enabling Radar Movement Self-Cancellation. IEEE Transactions on Microwave Theory and Techniques, 66(11), 5106-5118. Lien externe

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