Welcome to Scholar Publishing Group

Water Pollution Prevention and Control Project, 2020, 1(2); doi: 10.38007/WPPCP.2020.010204.

Design of Sensor-based Water Pollution Monitoring System

Author(s)

Holly M. Golecki

Corresponding Author:
Holly M. Golecki
Affiliation(s)

French Naval Academy, 29240 Brest, France

Abstract

As a product of the development of the information age, the intelligent automatic water quality monitoring method is the main feature of wireless sensor network, which uses database and other technologies. Based on this, this paper first analyzed the overall design of the water quality monitoring system, focused on the overall structure design of the water quality monitoring system, and put forward the requirements of the water quality monitoring system. Then this paper designed the monitoring system, discussed the monitoring node design and remote monitoring, and proposed the data processing task. This paper also discussed the software design of the water quality monitoring system, starting from the analysis of the network coordinator node program, router node program, and sensor node program, and used the residual repair algorithm to strengthen the design of the water quality pollution monitoring system. After comparison, it can be seen that the data accuracy of the new water pollution monitoring system was 20.2% higher than that before prevention and control, and the monitoring perfection was 16.9% higher than that before prevention and control. After using the new water pollution monitoring system, the real-time data integrity was 0.25 higher than that of the traditional monitoring system, and the monitoring system integrity was 0.24 higher than that of the traditional system.

Keywords

Water Pollution, Pollution Monitoring System, Sensing Element, Residual Repair Algorithm

Cite This Paper

Holly M. Golecki. Design of Sensor-based Water Pollution Monitoring System. Water Pollution Prevention and Control Project (2020), Vol. 1, Issue 2: 30-39. https://doi.org/10.38007/WPPCP.2020.010204.

References

[1] Kumar Vinod. Assessment of heavy-metal pollution in three different Indian water bodies by combination of multivariate analysis and water pollution indices. Human and ecological risk assessment: an international journal. (2020) 26(1): 1-16. https://doi.org/10.1080/10807039.2018.1497946

[2] Singh Nirala, Bryan R. Goldsmith. Role of electrocatalysis in the remediation of water pollutants. ACS Catalysis. (2020) 10(5): 3365-3371. https://doi.org/10.1021/acscatal.9b04167

[3] Obinna Isiuku Beniah, Enyoh Christian Ebere. A review: Water pollution by heavy metal and organic pollutants: Brief review of sources, effects and progress on remediation with aquatic plants. Analytical Methods in Environmental Chemistry Journal. (2019) 2(03): 5-38. https://doi.org/10.24200/amecj.v2.i03.66

[4] Xiaodong He, Peiyue Li. Surface water pollution in the middle Chinese Loess Plateau with special focus on hexavalent chromium (Cr6+): occurrence, sources and health risks. Exposure and Health. (2020) 12(3): 385-401. https://doi.org/10.1007/s12403-020-00344-x

[5] He Li, Juan Lu. Can regional integration control transboundary water pollution? A test from the Yangtze River economic belt. Environmental Science and Pollution Research. (2020) 27(22): 28288-28305. https://doi.org/10.1007/s11356-020-09205-1

[6] Lyu Yizheng. Quantifying the life cycle environmental impacts of water pollution control in a typical chemical industrial park in China. Journal of Industrial Ecology. (2020) 25(6): 1673-1687. https://doi.org/10.1111/jiec.13149

[7] Dhingra Swati. Internet of Things mobile-air pollution monitoring system (IoT-Mobair). IEEE Internet of Things Journal. (2019) 6(3): 5577-5584. https://doi.org/10.1109/JIOT.2019.2903821

[8] Kaivonen Sami, Edith C-H. Ngai. Real-time air pollution monitoring with sensors on city bus. Digital Communications and Networks. (2020) 6(1): 23-30. https://doi.org/10.1016/j.dcan.2019.03.003

[9] Bales Elizabeth. Personal pollution monitoring: mobile real-time air quality in daily life. Personal and Ubiquitous Computing. (2019) 23(2): 309-328. https://doi.org/10.1007/s00779-019-01206-3

[10] Kumar Sanjay P. Ramchandar Rao, and Ch Rajendra Prasad. "Internet of things based pollution tracking and alerting system." International Journal of Innovative Technology and Exploring Engineering. (2019) 8(8): 2242-2245.

[11] Nour Hamdy El Sayed, El Said Nouh. Comprehensive pollution monitoring of the Egyptian Red Sea coast by using the environmental indicators. Environmental Science and Pollution Research. (2020) 27(23): 28813-28828. https://doi.org/10.1007/s11356-020-09079-3

[12] Rahman Mirza ATM. Heavy metal pollution assessment in the groundwater of the Meghna Ghat industrial area, Bangladesh, by using water pollution indices approach. Applied Water Science. (2020) 10(8): 1-15. https://doi.org/10.1007/s13201-020-01266-4

[13] Hidayah Izhamil. Seasonal and spatial water pollution status at the rivers estuaries in cirebon region. Squalen Bulletin of Marine and Fisheries Postharvest and Biotechnology. (2020) 16(2): 75-82. https://doi.org/10.15578/squalen.505

[14] Lele Sharachchandra, Priyanka Jamwal, Mahesh Menon. Challenges in Regulating Water Pollution in India Standards, Monitoring, Enforcement and Accountability. Economic and Political Weekly. (2020) 56(52): 46-52.