References
- National Critical Infrastructure Protection Program, 2020,
Consolidated Text. Available at: https://www.gov.pl/web/rcb/narodowy-program-ochrony-infrastruktury-krytycznej
(Access 23/10/2021) (in Polish).
- P. Małka, T. Uhl, J. Kłapyta, R. Langer, Integrated energy
efficiency system as an important element increasing the
reliability of water supply and sewage systems, Gas Water
Sanit. Technol., 4 (2017) 154–156 (in Polish).
- P. Małka, Cybersecurity of Industrial Systems OT Operating
in Municipal Infrastructure, Critical Infrastructure of Cities:
Safe Functioning of Municipal Infrastructure: Water Supply,
Sewage, Energy, ICT: International Scientific and Technical
Conference, October 24–26, 2018, Nowy Sącz - Rytro, Nowy
Sącz: “Sądeckie Wodociągi” Spółka z o. o., 2018, p. 19 (in Polish).
- K. Gaska, A. Generowicz, M. Lobur, N. Jaworski, J. Ciuła,
M. Vovk, Advanced algorithmic model for poly-optimization
of biomass fuel production from separate combustible fractions
of municipal wastes as a progress in improving energy
efficiency of waste utilization, E3S Web Conf., 122 (2019) 01004,
doi:10.1051/e3sconf/201912201004.
- R. Brodziak, A. Urbaniak, Management and monitoring of the
water supply system in a smart city, Gas Water Sanit. Technol.,
5 (2019) 165–171 (in Polish).
- D. Chen, P. Wawrzyński, L. Zhihan, Cyber security in smart
cities: a review of deep learning-based applications and case
studies, Sustainable Cities Soc., 66 (2021) 102655, doi: 10.1016/j.scs.2020.102655.
- A. Hassanzadeh, A. Rasekh, S. Galelli, M. Aghashahi,
R. Taormina, A. Ostfeld, M. Katherine Banks, A review of
cybersecurity incidents in the water sector, J. Environ. Eng.,
146 (2020) 1–44.
- G. Falco, C. Caldera, H. Shrobe, IIoT cybersecurity risk modeling
for SCADA systems, IEEE Internet Things J., 5 (2018) 4486–4495.
- J. Ciuła, Modeling the migration of anthropogenic pollution
from active municipal landfill in groundwaters, Archit. Civ.
Eng. Environ., 14 (2019) 81–90.
- M. Załęska-Orłowska, N. Wronowski, Intelligent network
management system in Żywiec, Direction Wod-Kan, 2 (2018)
24–28 (in Polish).
- J. Bylka, Wyzwania dla inteligentnych sieci wodociągowych,
Kierunek Wod-Kan. T. 2 Challenges for smart water networks,
Direction Wod-Kan, 2 (2017) 32–34 (in Polish).
- R. Padulano, G. Del Giudice, A mixed strategy based on selforganizing
map for water demand pattern profiling of largesize
smart water grid data, Water Resour. Manage., 32 (2018)
3671–3685.
- C. Giudicianni, M. Herrera, A. di Nardo, A. Carravetta,
H.M. Ramos, L. Adeyeye, Zero-net energy management for the
monitoring and control of dynamically-partitioned smart water
systems, J. Cleaner Prod., 252 (2020) 119745, doi: 10.1016/j.jclepro.2019.119745.
- R. Wyczółkowski, Intelligent water network monitoring system,
Oper. Reliability, 1 (2008) 33–36 (in Polish).
- G. Tzagkarakis, P. Charalampidis, S. Roubakis, A. Makrogiannakis,
P. Tsakalides, Quantifying the computational
efficiency of compressive sensing in smart water network
infrastructures, Sensors, 20 (2020) 3299, doi:10.3390/s20113299.
- E. Wysowska, A. Kicińska, Assessment of health risks with
water consumption in terms of content of selected organic
xenobiotics, Desal. Water Treat., 234 (2021) 1–14.
- Directive (EU) 2020/2184 of the European Parliament and
of the Council of 16 December 2020 on the Quality of Water
Intended for Human Consumption.
- The Act of 5 July 2018 on the National Cybersecurity System,
Journal of Laws 2018 Item 1560 (Accessed on October 23, 2021)
(in Polish).
- Cybersecurity A.D. 2018 Strategy, Policy, Recommendations
– Cybersecurity in the Policy Perspective, NASK Publishing
House.
- S. Won Lee, S. Sarp, D. Jin Jeon, J. Ha Kim, Smart water grid:
the future water management platform, Desal. Water Treat.,
55 (2015) 339–346.
- H.M. Ramos, A. McNabola, P. Amparo López-Jiménez,
M. Pérez-Sánchez, Smart water management towards future
water sustainable networks, Water, 12 (2020) 58, doi: 10.3390/w12010058.
- K. Gaska, A. Generowicz, SMART computational solutions
for the optimization of selected technology processes as an
innovation and progress in improving energy efficiency of
smart cities—a case study, Energies, 13 (2020) 3338, doi: 10.3390/en13133338.
- M.H. Yasin, S.R.M. Zeebaree, M.A.M. Sadeeq, A.Y. Ameen,
I.M. Ibrahim, R.R. Zebari, R.K. Ibrahim, A.B. Sallow, IoT and ICT
based smart water management, monitoring and controlling
system: a review, Asian J. Res. Comput. Sci., 8 (2021) 42–56.
- T.M. Vinod Kumar, C. Mohammed Firoz, P. Bimal,
P.S. Harikumar, P. Sankaran, Smart Water Management
for Smart Kozhikode Metropolitan Area, T. Vinod Kumar,
Ed., Smart Environment for Smart Cities, Advances in 21st
Century Human Settlements, Springer, Singapore, 2020.
Available at: doi:10.1007/978-981-13-6822-6_7
- W. Cieżak, J. Łomotowski, Z. Siwoń, P. Linczar, J. Cieżak, Neural
models in the analysis and forecasting of water partition,
Instal, 7 (2011) 61–63 (in Polish).