IEEE Circuits and Systems Magazine - Q1 2022 - 35

This work was supported in part by Grant PID2019103876RB-I00,
funded by MCIN/AEI/10.13039/501100011033,
by the European Union " ESF Investing in your future " ,
and by Junta de AndalucĂ­a under contracts US-1260118
and PY20-00599.
José M. de la Rosa (Fellow, IEEE) received
the M.S. degree in Physics in
1993 and the Ph.D. degree in Microelectronics
in 2000, both from the University
of Seville, Spain. Since 1993 he has been
working at the Institute of Microelectronics
of Seville (IMSE), which is in turn part of the Spanish
Microelectronics Center (CNM) of the Spanish National
Research Council (CSIC), where he is presently the
vice-director. He is also a Full Professor at the Dpt. of Electronics
and Electromagnetism of the University of Seville.
His main research interests are in the field of analog and
mixed-signal integrated circuits, especially high-performance
data converters. In these topics, Dr. de la Rosa has
participated in a number of National and European research
and industrial projects, and has co-authored 6
books and more than 250 international peer-reviewed
publications, including journal and conference papers.
Dr. de la Rosa served as Distinguished Lecturer of the
IEEE Circuits and Systems Society (term 2017-2018). He
served as Editor in Chief of IEEE Transactions on Circuits
and Systems II: Express Briefs (TCAS-II) (term
2020-2021), and has served as Deputy Editor in Chief
of IEEE TCAS-II (2015-2019). He served also as Associate
Editor for IEEE Transactions on Circuits and Systems
I: Regular Papers, where he received the 2012-2013
Best Associate Editor Award and as Guest Editor of the
Special Issue on the Custom Integrated Circuits Conference
(CICC) in 2013 and 2014. He served also as Guest
Editor of the Special Issue of the IEEE J. on Emerging
and Selected Topics in Circuits and Systems on NextGeneration
Delta-Sigma Converters. He is involved in
the organizing committees of diverse IEEE conferences,
including ISCAS, MWSCAS, ICECS, LASCAS, VLSISoC,
and DATE, serving as TPC chair of MWSCAS'12,
ICECS'12, LASCAS'15 and ISICAS'18-19. He was elevated
to the grade of IEEE Fellow in 2020.
References
[1] T. M. Siebel, Digital Transformation: Survive and Thrive in an Era of
Mass Extinction. RosettaBooks, 2019.
[2] M. Liu, " Unleashing the future of innovation, " in IEEE ISSCC Dig.
Tech. Papers, Feb. 2021, pp. 9-16.
[3] K. Loh, " Fertilizing AIoT from roots to leaves, " in IEEE ISSCC Dig.
Tech. Papers, Feb. 2020, pp. 15-21.
[4] C. Systems, " Cisco annual internet report (2018-2023), " Cisco Systems,
2020.
[5] Q. Wu et al., " Cognitive Internet of Things: A new paradigm beyond
connection, " IEEE Internet Things J., vol. 1, pp. 129-143, Apr. 2014, doi:
10.1109/JIOT.2014.2311513.
FIRST QUARTER 2022
[6] R. G. Machado and A. M. Wyglinski, " Software-defined radio: Bridging
the analog/digital divide, " Proc. IEEE, vol. 103, pp. 409-423, Mar.
2015, doi: 10.1109/JPROC.2015.2399173.
[7] S. Vitturi et al., " Industrial communication systems and their future
challenges: Next-generation Ethernet, IIoT, and 5G, " Proc. IEEE, vol. 107,
pp. 944-961, Jun. 2019, doi: 10.1109/JPROC.2019.2913443.
[8] K. Letaief et al., " The roadmap to 6G: AI empowered wireless networks, "
IEEE Commun., vol. 57, pp. 84-90, Aug. 2019, doi: 10.1109/
MCOM.2019.1900271.
[9] C. Zhang et al., " Artificial intelligence for 5G and Beyond 5G: Implementations,
algorithms, and optimizations, " IEEE J. Emerg. Sel.
Topics Circuits Syst., vol. 10, pp. 149-163, Jun. 2020, doi: 10.1109/JETCAS.2020.3000103.
[10]
O. Kanhere and T. S. Rappaport, " Position location for futuristic
cellular communications: 5G and beyond, " IEEE Commun. Mag., vol. 59,
pp. 70-75, Jan. 2021, doi: 10.1109/MCOM.001.2000150.
[11] M. Matthaiou et al., " The road to 6G: Ten physical layer challenges
for communications engineers, " IEEE Commun. Mag., vol. 59, pp. 64-69,
Jan. 2021, doi: 10.1109/MCOM.001.2000208.
[12] V. Peng, " Adaptive intelligence in the new computing era, " in IEEE
ISSCC Dig. Tech. Papers, Feb. 2021, pp. 17-21.
[13] C. She et al., " A tutorial on ultrareliable and low-latency communications
in 6G: Integrating domain knowledge into deep learning, " Proc.
IEEE, vol. 109, pp. 204-246, Mar. 2021, doi: 10.1109/JPROC.2021.3053601.
[14] J. Mitola and G. Q. Maguire, " Cognitive radio: Making software radios
more personal, " IEEE Pers. Commun., vol. 6, pp. 13-18, Aug. 1999,
doi: 10.1109/98.788210.
[15] A. A. Khan et al., " Cognitive-radio-based Internet of Things: Applications,
architectures, spectrum related functionalities, and future research
directions, " IEEE Wireless Commun., vol. 24, pp. 17-25, Jun. 2017,
doi: 10.1109/MWC.2017.1600404.
[16] F. Hu et al., " Full spectrum sharing in cognitive radio networks toward
5G: A survey, " IEEE Access, vol. 6, pp. 15,754-15,776, Feb. 2018.
[17] F. Restuccia and T. Melodia, " Deep learning at the physical layer:
System challenges and applications to 5G and beyond, " IEEE Commun.
Mag., vol. 58, pp. 58-64, Oct. 2020, doi: 10.1109/MCOM.001.2000243.
[18] S. Han et al., " Artificial-intelligence-enabled air interface for 6G: Solutions,
challenges, and standardization impacts, " IEEE Commun. Mag.,
vol. 58, pp. 73-79, Oct. 2020, doi: 10.1109/MCOM.001.2000218.
[19] S. Hosseinalipour et al., " From federated to fog learning: Distributed
machine learning over heterogeneous wireless networks, " IEEE Commun.
Mag., vol. 58, pp. 41-47, Dec. 2020, doi: 10.1109/MCOM.001.2000410.
[20] H. Aboushady et al., " Cognitive radio circuits and systems-Application
to digitzers, " in Proc. IEEE Int. Symp. Circuits Syst. (ISCAS), May 2021.
[21] D. Katabi, " Working at the intersection of machine learning, signal
processing, sensors, and circuits, " in IEEE ISSCC Dig. Tech. Papers, Feb.
2021, pp. 26-29.
[22] G. Desoli and E. Filippi, " An outlook on the evolution of mobile terminals:
From monolithic to modular multiradio, multiapplication platforms, "
IEEE Circuits Syst. Mag., vol. 6, no. 2, pp. 17-29, Second Quarter
2006, doi: 10.1109/MCAS.2006.1648987.
[23] S. Onoe, " Evolution of 5G mobile technology toward 2020 and beyond, "
in IEEE ISSCC Dig. Tech. Papers, Feb. 2016, pp. 23-28.
[24] A. Aijaz and H. Aghvami, " Cognitive machine-to-machine communications
for Internet-of-Things: A protocol stack perspective, " IEEE Internet
Things J., vol. 2, pp. 103-112, Apr. 2015, doi: 10.1109/JIOT.2015.2390775.
[25] R. Bagheri et al., " Software-defined radio receiver: Dream to reality, "
IEEE Commun. Mag., vol. 44, pp. 111-118, Aug. 2006, doi: 10.1109/
MCOM.2006.1678118.
[26] D. Cabric et al., " Spectrum sharing radios, " IEEE Circuits Syst. Mag.,
vol. 6, pp. 30-45, Jun. 2006, doi: 10.1109/MCAS.2006.1648988.
[27] R. Rubestein, " Radios get smart, " IEEE Spectr., vol. 44, pp. 47-50,
Feb. 2007.
[28] A. A. Abidi, " The path to the software-defined radio receiver, "
IEEE J. Solid-State Circuits, vol. 42, pp. 954-966, May 2007, doi: 10.1109/
JSSC.2007.894307.
[29] J. Mitola, " The software radio architecture, " IEEE Commun. Mag.,
pp. 26-38, May 1995, doi: 10.1109/35.393001.
[30] L. Reger, " The road ahead for securely-connected cars, " in IEEE
ISSCC Dig. Tech. Papers, Feb. 2016, pp. 29-33.
[31] I. F. Akyildiz et al., " A survey on spectrum management in cognitive
radio networks, " IEEE Commun. Mag., vol. 46, pp. 40-48, Apr. 2008, doi:
10.1109/MCOM.2008.4481339.
IEEE CIRCUITS AND SYSTEMS MAGAZINE
35

IEEE Circuits and Systems Magazine - Q1 2022

Table of Contents for the Digital Edition of IEEE Circuits and Systems Magazine - Q1 2022

IEEE Circuits and Systems Magazine - Q1 2022 - Cover1
IEEE Circuits and Systems Magazine - Q1 2022 - Cover2
IEEE Circuits and Systems Magazine - Q1 2022 - 1
IEEE Circuits and Systems Magazine - Q1 2022 - 2
IEEE Circuits and Systems Magazine - Q1 2022 - 3
IEEE Circuits and Systems Magazine - Q1 2022 - 4
IEEE Circuits and Systems Magazine - Q1 2022 - 5
IEEE Circuits and Systems Magazine - Q1 2022 - 6
IEEE Circuits and Systems Magazine - Q1 2022 - 7
IEEE Circuits and Systems Magazine - Q1 2022 - 8
IEEE Circuits and Systems Magazine - Q1 2022 - 9
IEEE Circuits and Systems Magazine - Q1 2022 - 10
IEEE Circuits and Systems Magazine - Q1 2022 - 11
IEEE Circuits and Systems Magazine - Q1 2022 - 12
IEEE Circuits and Systems Magazine - Q1 2022 - 13
IEEE Circuits and Systems Magazine - Q1 2022 - 14
IEEE Circuits and Systems Magazine - Q1 2022 - 15
IEEE Circuits and Systems Magazine - Q1 2022 - 16
IEEE Circuits and Systems Magazine - Q1 2022 - 17
IEEE Circuits and Systems Magazine - Q1 2022 - 18
IEEE Circuits and Systems Magazine - Q1 2022 - 19
IEEE Circuits and Systems Magazine - Q1 2022 - 20
IEEE Circuits and Systems Magazine - Q1 2022 - 21
IEEE Circuits and Systems Magazine - Q1 2022 - 22
IEEE Circuits and Systems Magazine - Q1 2022 - 23
IEEE Circuits and Systems Magazine - Q1 2022 - 24
IEEE Circuits and Systems Magazine - Q1 2022 - 25
IEEE Circuits and Systems Magazine - Q1 2022 - 26
IEEE Circuits and Systems Magazine - Q1 2022 - 27
IEEE Circuits and Systems Magazine - Q1 2022 - 28
IEEE Circuits and Systems Magazine - Q1 2022 - 29
IEEE Circuits and Systems Magazine - Q1 2022 - 30
IEEE Circuits and Systems Magazine - Q1 2022 - 31
IEEE Circuits and Systems Magazine - Q1 2022 - 32
IEEE Circuits and Systems Magazine - Q1 2022 - 33
IEEE Circuits and Systems Magazine - Q1 2022 - 34
IEEE Circuits and Systems Magazine - Q1 2022 - 35
IEEE Circuits and Systems Magazine - Q1 2022 - 36
IEEE Circuits and Systems Magazine - Q1 2022 - 37
IEEE Circuits and Systems Magazine - Q1 2022 - 38
IEEE Circuits and Systems Magazine - Q1 2022 - 39
IEEE Circuits and Systems Magazine - Q1 2022 - 40
IEEE Circuits and Systems Magazine - Q1 2022 - 41
IEEE Circuits and Systems Magazine - Q1 2022 - 42
IEEE Circuits and Systems Magazine - Q1 2022 - 43
IEEE Circuits and Systems Magazine - Q1 2022 - 44
IEEE Circuits and Systems Magazine - Q1 2022 - 45
IEEE Circuits and Systems Magazine - Q1 2022 - 46
IEEE Circuits and Systems Magazine - Q1 2022 - 47
IEEE Circuits and Systems Magazine - Q1 2022 - 48
IEEE Circuits and Systems Magazine - Q1 2022 - 49
IEEE Circuits and Systems Magazine - Q1 2022 - 50
IEEE Circuits and Systems Magazine - Q1 2022 - 51
IEEE Circuits and Systems Magazine - Q1 2022 - 52
IEEE Circuits and Systems Magazine - Q1 2022 - 53
IEEE Circuits and Systems Magazine - Q1 2022 - 54
IEEE Circuits and Systems Magazine - Q1 2022 - 55
IEEE Circuits and Systems Magazine - Q1 2022 - 56
IEEE Circuits and Systems Magazine - Q1 2022 - 57
IEEE Circuits and Systems Magazine - Q1 2022 - 58
IEEE Circuits and Systems Magazine - Q1 2022 - 59
IEEE Circuits and Systems Magazine - Q1 2022 - 60
IEEE Circuits and Systems Magazine - Q1 2022 - 61
IEEE Circuits and Systems Magazine - Q1 2022 - 62
IEEE Circuits and Systems Magazine - Q1 2022 - 63
IEEE Circuits and Systems Magazine - Q1 2022 - 64
IEEE Circuits and Systems Magazine - Q1 2022 - 65
IEEE Circuits and Systems Magazine - Q1 2022 - 66
IEEE Circuits and Systems Magazine - Q1 2022 - 67
IEEE Circuits and Systems Magazine - Q1 2022 - 68
IEEE Circuits and Systems Magazine - Q1 2022 - 69
IEEE Circuits and Systems Magazine - Q1 2022 - 70
IEEE Circuits and Systems Magazine - Q1 2022 - 71
IEEE Circuits and Systems Magazine - Q1 2022 - 72
IEEE Circuits and Systems Magazine - Q1 2022 - 73
IEEE Circuits and Systems Magazine - Q1 2022 - 74
IEEE Circuits and Systems Magazine - Q1 2022 - 75
IEEE Circuits and Systems Magazine - Q1 2022 - 76
IEEE Circuits and Systems Magazine - Q1 2022 - 77
IEEE Circuits and Systems Magazine - Q1 2022 - 78
IEEE Circuits and Systems Magazine - Q1 2022 - 79
IEEE Circuits and Systems Magazine - Q1 2022 - 80
IEEE Circuits and Systems Magazine - Q1 2022 - 81
IEEE Circuits and Systems Magazine - Q1 2022 - 82
IEEE Circuits and Systems Magazine - Q1 2022 - 83
IEEE Circuits and Systems Magazine - Q1 2022 - 84
IEEE Circuits and Systems Magazine - Q1 2022 - Cover3
IEEE Circuits and Systems Magazine - Q1 2022 - Cover4
https://www.nxtbook.com/nxtbooks/ieee/circuitsandsystems_2023Q3
https://www.nxtbook.com/nxtbooks/ieee/circuitsandsystems_2023Q2
https://www.nxtbook.com/nxtbooks/ieee/circuitsandsystems_2023Q1
https://www.nxtbook.com/nxtbooks/ieee/circuitsandsystems_2022Q4
https://www.nxtbook.com/nxtbooks/ieee/circuitsandsystems_2022Q3
https://www.nxtbook.com/nxtbooks/ieee/circuitsandsystems_2022Q2
https://www.nxtbook.com/nxtbooks/ieee/circuitsandsystems_2022Q1
https://www.nxtbook.com/nxtbooks/ieee/circuitsandsystems_2021Q4
https://www.nxtbook.com/nxtbooks/ieee/circuitsandsystems_2021q3
https://www.nxtbook.com/nxtbooks/ieee/circuitsandsystems_2021q2
https://www.nxtbook.com/nxtbooks/ieee/circuitsandsystems_2021q1
https://www.nxtbook.com/nxtbooks/ieee/circuitsandsystems_2020q4
https://www.nxtbook.com/nxtbooks/ieee/circuitsandsystems_2020q3
https://www.nxtbook.com/nxtbooks/ieee/circuitsandsystems_2020q2
https://www.nxtbook.com/nxtbooks/ieee/circuitsandsystems_2020q1
https://www.nxtbook.com/nxtbooks/ieee/circuitsandsystems_2019q4
https://www.nxtbook.com/nxtbooks/ieee/circuitsandsystems_2019q3
https://www.nxtbook.com/nxtbooks/ieee/circuitsandsystems_2019q2
https://www.nxtbook.com/nxtbooks/ieee/circuitsandsystems_2019q1
https://www.nxtbook.com/nxtbooks/ieee/circuitsandsystems_2018q4
https://www.nxtbook.com/nxtbooks/ieee/circuitsandsystems_2018q3
https://www.nxtbook.com/nxtbooks/ieee/circuitsandsystems_2018q2
https://www.nxtbook.com/nxtbooks/ieee/circuitsandsystems_2018q1
https://www.nxtbookmedia.com