Bennett, S., El Harake, T. N., Goubran, R., and Knoefel, F.
(2017). Adaptive eulerian video processing of thermal
video: An experimental analysis. IEEE Transactions
on Instrumentation and Measurement, 66(10):2516–
2524.
Ciattaglia, G., Senigagliesi, L., De Santis, A., and Ricciuti,
M. (2019). Contactless measurement of physiological
parameters. In 2019 IEEE 9th International Confer-
ence on Consumer Electronics (ICCE-Berlin), pages
22–26.
Couderc, J.-P., Kyal, S., Mestha, L. K., Xu, B., Peterson,
D. R., Xia, X., and Hall, B. (2015). Detection of atrial
fibrillation using contactless facial video monitoring.
Heart Rhythm, 12(1):195–201.
De Ponte M
¨
uller, F. (2017). Survey on ranging sensors and
cooperative techniques for relative positioning of ve-
hicles. Sensor, 17:271.
Ding, L., Ali, M., Patole, S., and Dabak, A. (2016). Vibra-
tion parameter estimation using fmcw radar. In 2016
IEEE International Conference on Acoustics, Speech
and Signal Processing (ICASSP), pages 2224–2228.
Fishler, E., Haimovich, A., Blum, R., Chizhik, D., Cimini,
L., and Valenzuela, R. (2004). Mimo radar: an idea
whose time has come. In Proceedings of the 2004
IEEE Radar Conference (IEEE Cat. No.04CH37509),
pages 71–78.
Gambi, E., Agostinelli, A., Belli, A., Burattini, L., Cip-
pitelli, E., Fioretti, S., Pierleoni, P., Ricciuti, M.,
Sbrollini, A., and Spinsante, S. (2017). Heart rate de-
tection using microsoft kinect: Validation and com-
parison to wearable devices. Sensors, 17(8):1776.
Georgiou, K., Larentzakis, A. V., Khamis, N. N., Al-
suhaibani, G. I., Alaska, Y. A., and Giallafos, E. J.
(2018). Can wearable devices accurately measure
heart rate variability? a systematic review. Folia med-
ica, 60(1):7–20.
Hsu, G.-S., Ambikapathi, A., and Chen, M.-S. (2017). Deep
learning with time-frequency representation for pulse
estimation from facial videos. In 2017 IEEE Interna-
tional Joint Conference on Biometrics (IJCB), pages
383–389. IEEE.
Hsu, T.-W. and Tseng, C.-H. (2016). Compact 24-ghz
doppler radar module for non-contact human vital-
sign detection. In 2016 International Symposium on
Antennas and Propagation (ISAP), pages 994–995.
IEEE.
Instruments, T. (2019). Awr1843 single-chip 76-ghz to 81-
ghz automotive radar sensor evaluation module. http:
//www.ti.com/tool/AWR1843BOOST.
Jian, L. and Stoica, P. (2009). MIMO Radar Signal Process-
ing. Wiley-IEEE Press, first edition.
Kumar, M., Weippert, M., Vilbrandt, R., Kreuzfeld, S., and
Stoll, R. (2007). Fuzzy evaluation of heart rate signals
for mental stress assessment. IEEE Transactions on
fuzzy systems, 15(5):791–808.
Lee, H., Kim, B.-H., Park, J.-K., and Yook, J.-G. (2019).
A novel vital-sign sensing algorithm for multiple sub-
jects based on 24-ghz fmcw doppler radar. Remote
Sensing, 11:1237.
Lee, K., Park, D., Cho, C., and Ko, H. (2018). Robust re-
mote heart rate estimation in car driving environment.
In 2018 IEEE International Conference on Consumer
Electronics (ICCE), pages 1–2.
Li, X., Chen, J., Zhao, G., and Pietik
¨
ainen, M. (2014). Re-
mote heart rate measurement from face videos under
realistic situations. In 2014 IEEE Conference on Com-
puter Vision and Pattern Recognition, pages 4264–
4271.
Lin, J. C., Kiernicki, J., Kiernicki, M., and Wollschlaeger,
P. B. (1979). Microwave apexcardiography. IEEE
Transactions on Microwave Theory and Techniques,
27(6):618–620.
Michahelles, F., Wicki, R., and Schiele, B. (2004). Less
contact: Heart-rate detection without even touching
the user. In Eighth International Symposium on Wear-
able Computers, volume 1, pages 4–7. IEEE.
Mu
˜
noz-Ferreras, J., Wang, J., Peng, Z., Li, C., and G
´
omez-
Garc
´
ıa, R. (2019). Fmcw-radar-based vital-sign mon-
itoring of multiple patients. In 2019 IEEE MTT-S In-
ternational Microwave Biomedical Conference (IM-
BioC), volume 1, pages 1–3.
Paulson, C. N., Chang, J. T., Romero, C. E., Watson, J.,
Pearce, F. J., and Levin, N. (2005). Ultra-wideband
radar methods and techniques of medical sensing and
imaging. In Smart Medical and Biomedical Sensor
Technology III, volume 6007, page 60070L. Interna-
tional Society for Optics and Photonics.
Pisa, S., Pittella, E., and Piuzzi, E. (2016). A survey of radar
systems for medical applications. IEEE Aerospace
and Electronic Systems Magazine, 31(11):64–81.
Ren, L., Wang, H., Naishadham, K., Kilic, O., and Fathy,
A. E. (2016). Phase-based methods for heart rate
detection using uwb impulse doppler radar. IEEE
Transactions on Microwave Theory and Techniques,
64(10):3319–3331.
Rouast, P. V., Adam, M. T., Chiong, R., Cornforth, D., and
Lux, E. (2018). Remote heart rate measurement using
low-cost rgb face video: a technical literature review.
Frontiers of Computer Science, 12(5):858–872.
Rumi
´
nski, J. (2016). Reliability of pulse measurements in
videoplethysmography. Metrology and Measurement
Systems, 23(3):359–371.
Sanyal, S. and Nundy, K. K. (2018). Algorithms for moni-
toring heart rate and respiratory rate from the video of
a user’s face. IEEE journal of translational engineer-
ing in health and medicine, 6:1–11.
Sebe, N., Alameda-Pineda, X., Tulyakov, S., Ricci, E., Yin,
L., and Cohn, J. F. (2019). Self-adaptive matrix com-
pletion for heart rate estimation from face videos un-
der realistic conditions. US Patent App. 10/335,045.
Srivastava, S. (2014). Weka: a tool for data preprocess-
ing, classification, ensemble, clustering and associa-
tion rule mining. International Journal of Computer
Applications, 88(10).
Theodor, P. (1996). Introduction to signal processing, by s.j.
orfanidis, prentice hall signal processing series, pren-
tice hall, upper saddle river, new jersey, 1996 - book
review. Control Engineering Practice, 4:1771–1772.
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