4 CONCLUSIONS AND FUTURE
WORKS
This paper describes a system for monitoring
smart campus applications based on IoT protocols.
Throughout this article, the details of the proposed ar-
chitecture were made, the main objective of which is
to support the deployment of new sensors, enabling
remote management of control applications by net-
work administrators, in addition to allowing the mon-
itoring of the analyzed applications as a function of
time, providing reliability through the use of diversity
techniques in the physical and data link layers, based
on the IEEE 802.15.4g SUN standard. Communica-
tion tests were performed with different protocols us-
ing websockets, public test instances of the MQTT
protocol and local implementations in order to verify
the degree of reliability in communication with differ-
ent levels of QoS (Quality of Service). Where, so far,
the results have been promising.
The next steps to consolidate this work will fo-
cus on providing a reliable exchange of messages be-
tween devices that operate in different modulation
schemes, respecting the predefined critical levels of
QoS. As future work it is expected that the proposed
architecture can be reused for use with the most di-
verse types of sensors in order to monitor other areas
of interest on the smart campus, such as: vehicle traf-
fic control, parking, intelligent lighting and security.
ACKNOWLEDGEMENTS
The authors would like to thank the partnership be-
tween the Federal University of Para
´
ıba and the Fed-
eral Institute of Para
´
ıba, the Coordination for the Im-
provement of Higher Education Personnel (CAPES),
and the Brazilian National Council for Scientific and
Technological Development (CNPq 421461/2018-7).
REFERENCES
Ahmed, M. A., Alsayyari, A. S., and Kim, Y.-C. (2019).
System architecture based on iot for smart campus
parking lots. In 2019 2nd International Conference on
Computer Applications & Information Security (IC-
CAIS), pages 1–5. IEEE.
Berouine, A., Lachhab, F., Malek, Y. N., Bakhouya, M., and
Ouladsine, R. (2017). A smart metering platform us-
ing big data and iot technologies. In 2017 3rd Interna-
tional Conference of Cloud Computing Technologies
and Applications (CloudTech), pages 1–6. IEEE.
Ejaz, W., Naeem, M., Shahid, A., Anpalagan, A., and Jo,
M. (2017). Efficient energy management for the inter-
net of things in smart cities. IEEE Communications
Magazine, 55(1):84–91.
Hossain, I., Das, D., and Rashed, M. G. (2019). Internet
of things based model for smart campus: Challenges
and limitations. In 2019 International Conference on
Computer, Communication, Chemical, Materials and
Electronic Engineering (IC4ME2), pages 1–4. IEEE.
Marfievici, R., Corbal
´
an, P., Rojas, D., McGibney, A., Rea,
S., and Pesch, D. (2017). Tales from the c130 hor-
ror room: A wireless sensor network story in a data
center. In Proceedings of the first ACM international
workshop on the engineering of reliable, robust, and
secure embedded wireless sensing systems, pages 24–
31.
Munoz, J., Chang, T., Vilajosana, X., and Watteyne, T.
(2018). Evaluation of ieee802.15.4g for environmen-
tal observations. Sensors, 18:3468.
Mu
˜
noz, J., Chang, T., Vilajosana, X., and Watteyne, T.
(2018). Evaluation of ieee802.15.4g for environmen-
tal observations. Sensors, 18(10).
Naik, N. (2017). Choice of effective messaging protocols
for iot systems: Mqtt, coap, amqp and http. In 2017
IEEE international systems engineering symposium
(ISSE), pages 1–7. IEEE.
P. Thubert, E., Cavalcanti, D., Vilajosana, X., Schmitt, C.,
and Farkas, J. (2020). Reliable and Available Wireless
Technologies. Internet-Draft.
Tuset-Peir
´
o, P., Gomes, R. D., Thubert, P., Cuerva, E.,
Egusquiza, E., and Vilajosana, X. (2020). A dataset to
evaluate IEEE 802.15.4g SUN for Dependable Low-
Power Wireless Communications in Industrial Scenar-
ios. MDPI Data, XX(XX).
Vejlgaard, B., Lauridsen, M., Nguyen, H., Kov
´
acs, I. Z.,
Mogensen, P., and Sorensen, M. (2017). Coverage
and capacity analysis of sigfox, lora, gprs, and nb-iot.
In 2017 IEEE 85th vehicular technology conference
(VTC Spring), pages 1–5. IEEE.
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