IMPLEMENTING LORA-BASED COMMUNICATION TECHNOLOGY FOR OVERHEAD LINES VIA INTERNET OF THINGS

Main Article Content

T. Lingaiah
Dr. K. Kusal Kumar
Dr.P.H. K Prasad
Bhukya Anji Babu Naik

Abstract

This project involves using an electrical base station as a receiver, with each home near the base station containing a transmitter. The purpose of this system is to enable easy communication between the homes and the base station in case of any faults, such as over-consumption of voltage or fuse issues. The system uses Lora WAN technology for communication, which allows for low-power, long-range communication between the devices. This abstract summarizes the key components and objectives of the project, which aims to improve the reliability and efficiency of the electrical grid by enabling real-time fault detection and communication.

Downloads

Download data is not yet available.

Metrics

Metrics Loading ...

Article Details

How to Cite
Lingaiah, T. ., Kumar, D. K. K., Prasad, D. K. ., & Naik, B. A. B. . (2019). IMPLEMENTING LORA-BASED COMMUNICATION TECHNOLOGY FOR OVERHEAD LINES VIA INTERNET OF THINGS. Turkish Journal of Computer and Mathematics Education (TURCOMAT), 10(2), 1974–1980. https://doi.org/10.61841/turcomat.v10i2.14568
Section
Articles

References

A. S. Richey, B. F. Thomas, M. Lo, J. T. Reager, J. S. Famiglietti, K. Voss, S. Swenson, and M. Rodell,

‘‘Quantifying renewable groundwater stress with GRACE,’’ Water Resour. Res., vol. 51, no. 7, pp. 5217–5238, Jul.

J. Koehler, P. Thomson, and R. Hope, ‘‘Pump-priming payments for sustainable water services in rural Africa,’’

World Develop., vol. 74, pp. 397–411, Oct. 2015.

R. C. Carter and A. Parker, ‘‘Climate change, population trends and groundwater in Africa,’’ Hydrol. Sci. J.,

vol. 54, no. 4, pp. 676–689, Aug. 2009.

A. Closas and F. Molle, ‘‘Groundwater governance in sub-Saharan Africa,’’ Int. Water Manage. Inst.,

Battaramulla, Sri Lanka, Tech. Rep. 2, 2016, p. 31, no. 2.

‘‘Sustainable groundwater development for improved livelihoods in SubSaharan Africa,’’ Int. Water Resour.

Assoc., Paris, France, Tech. Rep. 9, 2018.

E. O’Connell, ‘‘Towards adaptation of water resource systems to climatic and socio-economic change,’’ Water

Resour. Manage., vol. 31, no. 10, pp. 2965–2984, Aug. 2017.

J. van Engelenburg, R. Hueting, S. Rijpkema, A. J. Teuling, R. Uijlenhoet, and F. Ludwig, ‘‘Impact of changes

in groundwater extractions and climate change on groundwater-dependent ecosystems in a complex hydrogeological

setting,’’ Water Resour. Manage., vol. 32, no. 1, pp. 259–272, 2018.

R. G. Taylor et al., ‘‘Ground water and climate change,’’ Nature Climate Change, vol. 3, no. 4, pp. 322–329,

L. Sears, D. Lim, and C.-Y. C. L. Lawell, ‘‘The economics of sustainable agricultural groundwater

management?’’ Water Econ. Policy, Singapore, Tech. Rep. 3, 2017, pp. 1–17, vol. 4.

Liu Lirong, Wang Yudong, ang Xiao Zhihong, “Study on the communication transmission mode of transmission

line on-line monitoring system,” Power system communication, vol. 32, pp. 20-25, 2011.