Chenming (Jim)  Zhou

Project Research Scientist

Department of  Electrical and Computer Engineering

Carnegie Mellon University

 

Office: REH 230

Tel: (412) 268-6611

E-mail: czhou@cmu.edu

URL: http://andrew.cmu.edu/user/czhou21

 

Research Interests Research Experience  Publications  Professional Activities Album Links

 

       UWB communications, space-time signal processing, time-domain electromagnetics, time reversal (TR), RF ranging. 

           

        

 Journal Articles  
  1. C. Zhou and R. C. Qiu, "Pulse Distortion and Optimum Transmit Waveform for Pulse-based UWB Communications," International Journal of Ultra Wideband Communications and Systems, Vol. 1, No. 1, pp. 32-48, 2009

  2. C. Zhou and R. C. Qiu, "A Study on Time Reversed Impulse UWB with Multiple Antennas Based on Measured Spatial UWB Channels," IEEE Trans. Veh. Techn., Vol. 58, No. 6, pp. 2884-2898, July 2009.

  3. C. Zhou and R. C. Qiu, "Pulse Distortion Caused by Cylinder Diffraction and Its Impact on UWB Communications,"  IEEE Trans. Veh. Techn., Vol. 56, No. 4, pp. 2385-2391, July 2007.

  4. R. C. Qiu, C. Zhou, N. Guo, and J. Q. Zhang, Time Reversal with MISO for Ultra-Wideband Communications: Experimental Results,IEEE Antenna and Wireless Propagation Letters, pp. 269-273, Vol. 5, 2006.

  5. R. C. Qiu, C. Zhou, and Q. Liu,  "Physics-Based Pulse Distortion for Ultra-Wideband Signals," IEEE Trans. Veh. Techn.,Vol. 54, No. 5, pp. 1546-1554, Sept. 2005.

 Book Chapeter  

  1. N. Guo, R. C. Qiu, Q. Zhang, B. M. Sadler, Z. Hu, P. Zhang, Y. Song, and C. Zhou, Handbook of Sensor Networks, ch. Time Reversal for Ultra-Wideband Communications: Architecture and Test-bed, pp. 1-41.World Scientific Publishing, 2009.

Conference Proceedings 

  1. C. Zhou, J. Downy, D. Stancil, and T. Mukherjee, "A Compact Positioning and Velocity RF Sensor for Improved Inertial Navigation," IEEE International Microwave Symposium 2009 (IMS2009), Boston, USA, Jun. 2009. 

  2. C. Zhou, J. Downy, D. Stancil, and T. Mukherjee, "A Compact RF Motion Sensor for Improved Inertial Navigation, " 43th Government Microcircuits Applications & Critical Technology Conference (GOMAC09), Orlando, FL, USA, Mar. 2009

  3. C. Zhou, N. Guo, B. M. Sadler, and R. C. Qiu, "Performance Study on Time Reversed Impulse MIMO for UWB Communications Based on Measured Spatial UWB Channels,'' IEEE Military Communications Conference (MILCOM07), Orlando, FL, Oct. 2007.

  4. R. C. Qiu, C. Zhou, J. Q. Zhang, and N. Guo, "Channel Reciprocity and Time-Reversed Propagation for Ultra-Wideband Communications," IEEE AP-S International Symposium on Antennas and Propagation, Honolulu, Hawaii, USA, June, 2007.

  5. C. Zhou and R. C. Qiu, "Spatial Focusing of Time-Reversed UWB Electromagnetic Waves in a Hallway Environment," IEEE 38th Southeastern Symposium on System Theory, Cookeville, TN, USA, 2006.

  6. R. C. Qiu, C. Zhou, N. Guo, and J. Q. Zhang, ''Time Reversal with MISO for Ultra-Wideband Communications: Experimental Results," Invited Paper, IEEE Radio and Wireless Symposium, San Diego, CA, 2006.

  7. C. Zhou, N. Guo, and R. C. Qiu, ''Experimental Results on Multiple-Input Single-Output (MISO) Time Reversal for UWB Systems in an Office Environment,'' Military Communications Conference (MILCOM06), Washington DC, Oct. 2006.

  8. C. Zhou and R. C. Qiu, "Pulse Distortion Caused by Cylinder Diffraction and Its Impact on UWB Communications,"  IEEE International Conference on Ultra-Wideband (ICUWB06), Boston, MA, USA, Sept., 2006.

  9. C. Zhou, D.Wang ,et al., “Dynamic Hologram Recording Characteristics in Photopolymer Films,” Proceedings of SPIE, Vol.4930, 443-451 (2002).

Articles in Chinese 

  1.  D.  Wang, C. Zhou, “Wigner Algebra for the Design of Achromatic Fractional Fourier Transformers,” Journal of Optoeletronics Laser, Vol. 12,  No.7, 742-745 (2001). 

  2. C.  Zhou, A. Yan, et al., “Study on the Multiple Recording Characteristics of Epoxy Resin-photopolymer,” Annual Symposium of Chinese Optical Society, 2004, Hangzhou, China.

Photos in China   

Photos in USA    

 

        

 

 

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