Segui
Chenming (Jim) Zhou
Chenming (Jim) Zhou
National Institute for Occupational Safety and Health (NIOSH)
Email verificata su cdc.gov
Titolo
Citata da
Citata da
Anno
Time reversal with MISO for ultrawideband communications: Experimental results
RC Qiu, C Zhou, N Guo, JQ Zhang
Antennas and Wireless Propagation Letters, IEEE 5 (1), 269-273, 2006
2922006
Industrial Internet of Things:(IIoT) applications in underground coal mines
C Zhou, N Damiano, B Whisner, M Reyes
Mining engineering 69 (12), 50, 2017
982017
Time-reversed ultra-wideband (UWB) multiple input multiple output (MIMO) based on measured spatial channels
C Zhou, N Guo, RC Qiu
IEEE Transactions on vehicular technology 58 (6), 2884-2898, 2009
922009
Physics-based pulse distortion for ultra-wideband signals
RC Qiu, C Zhou, Q Liu
Vehicular Technology, IEEE Transactions on 54 (5), 1546-1555, 2005
862005
Accurate Phase-Based Ranging Measurements for Backscatter RFID Tags
C Zhou, J Griffin
Antennas and Wireless Propagation Letters, IEEE, 1-1, 2012
802012
RF Propagation in Mines and Tunnels: Extensive measurements for vertically, horizontally, and cross-polarized signals in mines and tunnels
C Zhou, T Plass, R Jacksha, JA Waynert
IEEE Antennas and Propagation Magazine 57 (4), 88-102, 2015
692015
Channel reciprocity and time-reversed propagation for ultra-wideband communications
RC Qiu, C Zhou, JQ Zhang, N Guo
Antennas and Propagation Society International Symposium, 2007 IEEE, 29-32, 2007
612007
Ray tracing and modal methods for modeling radio propagation in tunnels with rough walls
C Zhou
IEEE transactions on antennas and propagation 65 (5), 2624-2634, 2017
532017
The equivalence of the ray tracing and modal methods for modeling radio propagation in lossy rectangular tunnels
C Zhou, J Waynert
IEEE Antennas and Wireless Propagation Letters 13, 615-618, 2014
462014
A Low-Power Shoe-Embedded Radar for Aiding Pedestrian Inertial Navigation
C Zhou, J Downey, D Stancil, T Mukherjee
Microwave Theory and Techniques, IEEE Transactions on 58 (10), 2521-2528, 2010
452010
A Shoe-Embedded RF Sensor for Motion Detection
C Zhou, J Downey, J Choi, D Stancil, J Paramesh, T Mukherjee
Microwave and Wireless Components Letters, IEEE 21 (3), 169-171, 2011
412011
Attenuation constants of radio waves in lossy-walled rectangular waveguides
C Zhou, J Waynert, T Plass, R Jacksha
Progress In Electromagnetics Research 142, 75-105, 2013
382013
Pulse distortion caused by cylinder diffraction and its impact on UWB communications
C Zhou, RC Qiu
Vehicular Technology, IEEE Transactions on 56 (4), 2385-2391, 2007
362007
Experimental results on multiple-input single-output (MISO) time reversal for UWB systems in an office environment
C Zhou, N Guo, RC Qiu
Military Communications Conference, 2006. MILCOM 2006. IEEE, 1-6, 2006
362006
Modeling and measurement of radio propagation in tunnel environments
C Zhou, R Jacksha
IEEE Antennas and Wireless Propagation Letters 16, 1431-1434, 2016
322016
Performance study on time reversed impulse MIMO for UWB communications based on measured spatial UWB channels
C Zhou, N Guo, BM Sadler, RC Qiu
Military Communications Conference, 2007. MILCOM 2007. IEEE, 1-6, 2007
302007
Spatial focusing of time-reversed UWB electromagnetic waves in a hallway environment
C Zhou, RC Qiu
System Theory, 2006. SSST'06. Proceeding of the Thirty-Eighth Southeastern …, 2006
282006
Simulation and measurement of through-the-earth, extremely low-frequency signals using copper-clad steel ground rods
NW Damiano, L Yan, B Whisner, C Zhou
IEEE transactions on industry applications 53 (5), 5088-5095, 2017
262017
An FMM-FFT accelerated SIE simulator for analyzing EM wave propagation in mine environments loaded with conductors
AC Yucel, W Sheng, C Zhou, Y Liu, H Bagci, E Michielssen
IEEE journal on multiscale and multiphysics computational techniques 3, 3-15, 2018
242018
Mathematical modeling and measurement of electric fields of electrode-based through-the-earth (TTE) communication
L Yan, C Zhou, M Reyes, B Whisner, N Damiano
Radio science 52 (6), 731-742, 2017
23*2017
Il sistema al momento non può eseguire l'operazione. Riprova più tardi.
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