IEEE Circuits and Systems Magazine - Q1 2022 - 72
Chao Wang (Senior Member, IEEE) received
his B.Eng. and Ph.D. degrees,
both in Electronics Engineering,
from
Huazhong University of Science and
Technology (HUST), China in 2000, and
Nanyang Technological University
(NTU), Singapore in 2008, respectively. From 2005 to
2007, he was also with the Center for Signal Processing,
NTU as a Research Engineer. Since then, he worked as an
IC Design Engineer with STMicroelectronics, Asia-Pacific
Design Centre, Singapore, from 2008 to 2010. He participated
in the development of STM Bayer/YUV CMOS image
sensing and processing ICs/SoCs. From 2010 to 2017,
he was a Research Scientist and a Project Leader with the
Institute of Microelectronics (IME), Agency for Science,
Technology and Research (A*STAR), Singapore, where he
led projects on wearable medical devices for cardio-engineering
applications, and MEMS Accelerometer ASICs for
medical and navigation applications. Currently, he is a
Professor with the HUST and also with Wuhan National
Laboratory of Optoelectronics (WHLO), Wuhan, China.
His major research interests include energy-efficient digital
signal processor design, ultra-low-voltage circuit
design, MEMS sensor ASIC design, and heterogeneous
3D-IC design, especially for biomedical/healthcare,
wireless sensor, IoT, neuromorphic computing and robot
applications. Dr. Wang is an IEEE Senior Member
and currently the chair of IEEE CASS-EDS-SSCS Wuhan
Joint Chapter. He used to serve as a committee member,
the vice chair and chair of IEEE SSCS Singapore Chapter.
He has also served as TPC members for a number of international
devices, circuits and systems conferences.
He used to serve as a Guest Editor for Journal Sensors,
Hindawi in 2016 and IEEE TBioCAS in 2019. Dr. Wang is
currently the Associate Editor of IEEE TCAS-I, IEEE CAS
Magazine, IEEE Access Journal and Elsevier Microelectronics
Journal.
Yuanjin Zheng (Senior Member, IEEE)
received the B.Eng. and M.Eng. degrees
from Xi'an Jiaotong University, Xi'an,
China, in 1993 and 1996, respectively,
and the Ph.D. degree from Nanyang
Technological University, Singapore, in
2001. He was with the National Key Laboratory of Optical
Communication Technology, University of Electronic
Science and Technology of China, Chengdu, China, from
1996 to 1998. In 2001, he joined the Institute of Microelectronics
(IME), Agency for Science, Technology and Research,
Singapore, where he was a Principal Investigator
and the Group Leader. In 2009, he joined Nanyang Technological
University and now the center director for VIRTUS
IC design center of excellence and program director
72
IEEE CIRCUITS AND SYSTEMS MAGAZINE
for VALENS bio instrumentation, devices & signal Processing.
With IME, he led and developed various projects
like CMOS RF transceivers, baseband system-onchip
(SoC) for wireless systems, ultrawideband, and
low-power biomedical ICs. His current research interests
include gigahertz radio frequency integrated circuit
and SoC design, biosensors and imaging, and surface
acoustic wave/bulk acoustic wave/microelectromechanical
systems sensors. He has authored or co-authored
over 400 international journal and conference papers,
several book chapters, and holds 26 patents filed/granted.
He has been organizing over 15 conferences as TPC
and session chairs, and has delivered over 25 invited
talks at international conferences. He was an associate
editor of IEEE Trans. on Biomedical Circuit and Systems
(IEEE TBioCAS), and currently serves as an associate
editor for IEEE Journal of Electromagnetics, RF and Microwave
in Medicine and Biology (J-ERM).
References
[1] R. Suzman and J. Beard, " Global health and aging, " U.S. Dept. of
State, 2011, pp. 1-32.
[2] " FCC notice of proposed rule making, revision of part 15 of the commission's
rules regarding ultra-wideband transmission systems, " FCC,
Washington, DC, ET-docket 98-153.
[3] U. Rajendra Acharya, K. Paul Joseph, N. Kannathal, C. M. Lim, and
J. S. Suri, " Heart rate variability: A review, " Med. Biol. Eng. Comput., vol.
44, no. 12, pp. 1031-1051, Dec. 2006, doi: 10.1007/s11517-006-0119-0.
[4] C. Li et al., " Overview of recent development on wireless sensing
circuits and systems for healthcare and biomedical applications, " IEEE
J. Emerg. Sel. Topics Circuits Syst., vol. 8, no. 2, pp. 165-177, Jun. 2018, doi:
10.1109/JETCAS.2018.2822684.
[5] J. Le Kernec et al., " Radar signal processing for sensing in assisted
living: The challenges associated with real-time implementation of
emerging algorithms, " IEEE Sig. Process. Mag., vol. 36, no. 4, pp. 29-41,
Jul. 2019, doi: 10.1109/MSP.2019.2903715.
[6] C. Gu, J. Wang, and J. Lien, " Motion sensing using radar: Gesture interaction
and beyond, " IEEE Microw. Mag., vol. 20, no. 8, pp. 44-57, Aug.
2019, doi: 10.1109/MMM.2019.2915490.
[7] A. D. Droitcour, O. Boric-Lubecke, V. M. Lubecke, J. Lin, and G. T.
Kovacs, " Range correlation and I/Q performance benefits in single-chip
silicon Doppler radars for noncontact cardiopulmonary monitoring, "
IEEE Trans. Microw. Theory Techn., vol. 52, no. 3, pp. 838-848, Mar. 2004,
doi: 10.1109/TMTT.2004.823552.
[8] V. Rahman, V. M. Lubecke, O. Boric-Lubecke, J. H. Prins, and T.
Sakamoto, " Doppler radar techniques for accurate respiration characterization
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Syst., vol. 8, no. 2, pp. 350-359, Jun. 2018, doi: 10.1109/JETCAS.2018.
2818181.
[9] J. Wang, X. Wang, L. Chen, J. Huangfu, C. Li, and L. Ran, " Noncontact
distance and amplitude-independent vibration measurement based on
an extended DACM algorithm, " IEEE Trans. Instrum. Meas., vol. 63, no. 1,
pp. 145-153, Jan. 2014, doi: 10.1109/TIM.2013.2277530.
[10] C. Li, J. Ling, J. Li, and J. Lin, " Accurate Doppler radar noncontact
vital sign detection using the RELAX algorithm, " IEEE Trans. Instrum.
Meas., vol. 59, no. 3, pp: 687-695, Mar. 2010, doi: 10.1109/TIM.
2009.2025986.
[11] J. Tu, T. Hwang, and J. Lin, " Respiration rate measurement under
1-D body motion using single continuous-wave Doppler radar vital sign
detection system, " IEEE Trans. Microw. Theory Techn., vol. 64, no. 6, pp.
1937-1946, Jun. 2016, doi: 10.1109/TMTT.2016.2560159.
[12] N. Mehrdad and N. Tavassolian, " High-accuracy heart rate variability
monitoring using Doppler radar based on Gaussian pulse train
modeling and FTPR algorithm. " IEEE Trans. Microw. Theory Techn., vol.
66, no. 1, pp. 556-567, Jan. 2018, doi: 10.1109/TMTT.2017.2721407.
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IEEE Circuits and Systems Magazine - Q1 2022
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