ACKNOWLEDGEMENTS
This work was supported by a grant of the Ro-
manian National Authority for Scientific Research
and Innovation, CCCDI UEFISCDI, project number
46E/2015, i-Light - A pervasive home monitoring sys-
tem based on intelligent luminaires.
REFERENCES
Bianchi, V., Ciampolini, P., and De Munari, I. (2018). Rssi-
based indoor localization and identification for zig-
bee wireless sensor networks in smart homes. IEEE
Transactions on Instrumentation and Measurement,
68(2):566–575.
Bocicor, M. I. et al. (2017). Cyber-physical system for as-
sisted living and home monitoring. In 13th IEEE In-
ternational Conference on Intelligent Computer Com-
munication and Processing, pages 487–493.
Buhagiar, J. (2018). CompTIA Network+ Review Guide:
Exam N10-007. Sybex.
Bulten, W., Rossum, A. C. V., and Haselager, W. F. G.
(2016). Human slam, indoor localisation of devices
and users. In IEEE First International Conference on
Internet-of-Things Design and Implementation.
Caron, C., Chamberland-Tremblay, D., Lapierre, C., Ha-
daya, P., Roche, S., and Saada, M. (2017). Indoor
Positioning, pages 1011–1019. Springer International
Publishing, Cham.
Cherntanomwong, P. and Suroso, D. J. (2011). Indoor local-
ization system using wireless sensor networks for sta-
tionary and moving target. In 2011 8th International
Conference on Information, Communications & Sig-
nal Processing, pages 1–5. IEEE.
de Meijer, C., Wouterse, B., Polder, J., and Koopmanschap,
M. (2013). The effect of population aging on health
expenditure growth: a critical review. European jour-
nal of ageing, 10(4):353–361.
Gavin, H. (2011). The levenberg-marquardt method for
nonlinear least squares curve-fitting problems. De-
partment of Civil and Environmental Engineering,
Duke University, pages 1–15.
Giovanelli, D. and Farella, E. (2018). Rssi or time-of-flight
for bluetooth low energy based localization? an exper-
imental evaluation. In 11th IFIP Wireless and Mobile
Networking Conference, pages 32–39. IEEE.
Huang, Y., Zheng, J., Xiao, Y., and Peng, M. (2015). Ro-
bust localization algorithm based on the RSSI rang-
ing scope. International Journal of Distributed Sensor
Networks, 11(2):587318.
infsoft (2019). Indoor navigation, indoor positioning, in-
door analytics and indoor tracking. https://www.
infsoft.com/. Accessed: February 2020.
Le Duc-Hung, Pham Cong-Kha, Nguyen Thi Thien Trang,
and Bui Trong Tu (2012). Parameter extraction and
optimization using levenberg-marquardt algorithm. In
2012 Fourth International Conference on Communi-
cations and Electronics (ICCE), pages 434–437.
Lee, J.-W., Kim, S.-J., and Han, S.-K. (2019). 3d visible
light indoor positioning by bokeh based optical inten-
sity measurement in smartphone camera. IEEE Ac-
cess, 7:91399–91406.
Li, X., Wang, J., Olesk, A., Knight, N., and Ding, W.
(2010). Indoor positioning within a single camera and
3d maps. pages 1 – 9.
Luo, X., O’Brien, W. J., and Julien, C. (2011). Comparative
evaluation of received signal strength index (RSSI)-
based indoor localization techniques for construction
jobsites. Adv. Eng. Inform., 25:355–363.
Lymberopoulos, D. et al. (2015). A realistic evaluation and
comparison of indoor location technologies: Experi-
ences and lessons learned. In The 14th ACM/IEEE
Conference on Information Processing in Sensor Net-
works (IPSN ’15).
Maduskar, D. and Tapaswi, S. (2017). RSSI based adap-
tive indoor location tracker. Scientific Phone Apps and
Mobile Devices, 3.
Marin, I., Bocicor, M. I., and Molnar, A. J. (2020). In-
door localization techniques within a home monitor-
ing platform. In Damiani E., Spanoudakis G., M. L.,
editor, Evaluation of Novel Approaches to Software
Engineering. ENASE 2019., volume 1172, pages 378–
401. Springer.
Marin, I., Bocicor, M. I., Molnar, A.-J., Marin, I., Vasi-
lateanu, A., Molnar, A.-J., Bocicor, M. I., Cuesta-
Frau, D., Molina-Pic
´
o, A., Goga, N., et al. (2019).
Indoor localisation with intelligent luminaires for
home monitoring. In Proceedings of the 14th In-
ternational Conference on Evaluation of Novel Ap-
proaches to Software Engineering, pages 464–471.
SCITEPRESS-Science and Technology Publications,
Lda.
Marin, I. et al. (2018). i-Light - Intelligent Luminaire Based
Platform for Home Monitoring and Assisted Living.
Electronics, 7(220).
Miao, Y., Wu, H., and Zhang, L. (2018). The accurate lo-
cation estimation of sensor node using received signal
strength measurements in large-scale farmland. Jour-
nal of Sensors, 2018:1–10.
Navigine (2020). Geolocation services for business. https:
//navigine.com/platform/. Accessed: February 2020.
Ozsoy, K., Bozkurt, A., and Tekin, I. (2013). Indoor po-
sitioning based on global positioning system signals.
Microwave and Optical Technology Letters, 55:1091–
1097.
Pointr (2020). Indoor positioning system. https://www.
pointr.tech/solutions/indoor-positioning-system. Ac-
cessed: February 2020.
Pu, C. C., Pu, C.-H., and Lee, H.-J. (2011). Indoor location
tracking using received signal strength indicator. In
Emerging Communications for Wireless Sensor Net-
works.
Qi, J. and Liu, G.-P. (2017). A robust high-accuracy ultra-
sound indoor positioning system based on a wireless
sensor network. Sensors, 17:2554.
Randell, C. and Muller, H. (2001). Low cost indoor posi-
tioning system. In International Conference on Ubiq-
uitous Computing, pages 42–48. Springer.
ENASE 2020 - 15th International Conference on Evaluation of Novel Approaches to Software Engineering
554