Internet of things and its applications

  • Authors

    • Y Shanmukha Sai
    • K Kiran Kumar
    2018-03-18
    https://doi.org/10.14419/ijet.v7i2.7.10758
  • ANN Technology, Aurdino Boards, Internet of Things, Raspberry pi Boards, Sensors
  • IOT is creating impeccable things by improving the performance of system in the field of communications in many technical applications in expedite manner and taken the system performance to next level. implementing IOT in today's world out do's the response time of the system to the normal system response in R&D applications. this paper depicts the challenges and the problems in various domains and gave the solution by imbibing IOT Technology by standardizing the system processes to meet the industrial as well as domestic needs.

     

  • References

    1. [1] S. Vatari, A. Bakshi, and T. Thakur, “Green house by using IOT and cloud computing,†2016 IEEE Int. Conf. Recent Trends Electron. Inf. Commun. Technol. RTEICT 2016 - Proc., pp. 246– 250, 2017.

      [2] R. K. Kodali, V. Jain, and S. Karagwal, “IoT based smart greenhouse,†2016 IEEE Reg. 10 Humanit. Technol. Conf., pp. 1– 6, 2016.

      [3] M. Bal and R. Abrishambaf, “A system for monitoring hand hygiene compliance based-on Internet-of-Things,†Proc. IEEE Int. Conf. Ind. Technol., pp. 1348–1353, 2017.

      [4] I. Azimi, A. Anzanpour, A. M. Rahmani, P. Liljeberg, and T. Salakoski, “Medical warning system based on Internet of Things using fog computing,†2016 Int. Work. Big Data Inf. Secur. IWBIS 2016, pp. 19–24, 2017.

      [5] J. Jusak, H. Pratikno, and V. H. Putra, “Internet of Medical Things for cardiac monitoring: Paving the way to 5G mobile networks,†2016 IEEE Int. Conf. Commun. Network, Satell. COMNETSAT 2016 - Proc., pp. 75–79, 2017.

      [6] L. Enciso-Quispe, J. Delgado, H. Vivanco, E. Zelaya-Policarpo, and P. A. Quezada-Sarmiento, “Internet of things based on Android technology for people with disabilities [Internet of Things basado en Tecnología Android para personas con discapacidad],†Iber. Conf. Inf. Syst. Technol. Cist., 2017.

      [7] M. Dumripatanachod and W. Piyawattanametha, “Centralized pap test diagnosis with artificial neural network and internet of things,†2016 IEEE 10th Int. Conf. Nano/Molecular Med. Eng., pp. 132– 135, 2016.

      [8] S. Dhote, P. Charjan, A. Phansekar, A. Hegde, S. Joshi, and J. Joshi, “Using FPGA-SoC interface for low cost IoT based image processing,†2016 Int. Conf. Adv. Comput. Commun. Informatics, ICACCI 2016, pp. 1963–1968, 2016.

      [9] A. Rupani, P. Whig, G. Sujediya, and P. Vyas, “A robust technique for image processing based on interfacing of Raspberry-Pi and FPGA using IoT,†2017 Int. Conf. Comput. Commun. Electron. COMPTELIX 2017, pp. 350–353, 2017.

      [10] C. Long, Y. Cao, T. Jiang, and Q. Zhang, “Edge Computing Framework for Cooperative Video Processing in Multimedia IoT Systems,†IEEE Trans. Multimed., vol. 9210, no. c, pp. 1–1, 2017.

      [11] A. R. Elias, N. Golubovic, C. Krintz, and R. Wolski, “Where’s The Bear?†Proc. Second Int. Conf. Internet-of-Things Des. Implement. - IoTDI ’17, pp. 247–258, 2017.

      [12] K. Sornalatha and V. R. Kavitha, “IoT Based Smart Museum using Bluetooth Low Energy,†pp. 1–4, 2017.

      [13] Y. Han, C. Lee, Y. Kim, S. Jeon, D. Seo, and I. Jung, “Smart umbrella for safety directions on Internet of Things,†2017 IEEE Int. Conf. Consum. Electron. ICCE 2017, no. 1, pp. 84–85, 2017.

      [14] P. Rizwan, K. Suresh, and M. R. Babu, “Real-time smart traffic management system for smart cities by using Internet of Things and big data,†2016 Int. Conf. Emerg. Technol. Trends, pp. 1–7, 2016.

      [15] M. Handte, S. Foell, S. Wagner, G. Kortuem, and P. J. Marron, “An Internet-of-Things Enabled Connected Navigation System for Urban Bus Riders,†IEEE Internet Things J., vol. 3, no. 5, pp. 735– 744, 2016.

      [16] X. Dong et al., “Framework of future innovative urban transport,†IEEE Conf. Intell. Transp. Syst. Proceedings, ITSC, pp. 19–23, 2016.

      [17] A. Habib, H. Anam, W. Anwaar, H. Afaq, Y. Amin, and H. Tenhunen, “Internet-of-things based smart tracking,†Proc. 2017 Int. Conf. Commun. Comput. Digit. Syst. C-CODE 2017, pp. 44– 47, 2017.

      [18] F. Montori, L. Bedogni, and L. Bononi, “A Collaborative Internet of Things Architecture for Smart Cities and Environmental Monitoring,†IEEE Internet Things J., vol. 4662, no. c, pp. 1–14, 2017.

      [19] D. Marquez-Viloria, J. S. Botero-Valencia, and J. Villegas- Ceballos, “A low cost georeferenced air-pollution measurement system used as early warning tool,†2016 21st Symp. Signal Process. Images Artif. Vision, STSIVA 2016, pp. 1–6, 2016.

      [20] V. Gokul and S. Tadepalli, “Implementation of a WiFi based plug and sense device for dedicated air pollution monitoring using IoT,†Proc. 2016 Online Int. Conf. Green Eng. Technol. IC-GET 2016, 2017.

      [21] G. R. C. Andrés, “CleanWiFi: The wireless network for air quality monitoring, community Internet access and environmental education in smart cities,†Proc. 2016 ITU Kaleidosc. Acad. Conf. ICTs a Sustain. World, ITU WT 2016, vol. 5, 2017.

      [22] Y. D. Dongyun wong, Chenglong Jiang, “Design of air quality monitoring system based on intenet of thing,†p. 6, 2016.

      [23] M. Firdhous, B. Sudantha, and P. Karunaratne, “IoT enabled proactive indoor air quality monitoring system for sustainable health management,†Comput. Commun. Technol. (ICCCT), 2017 2nd Int. Conf., pp. 216–221, 2017.

      [24] N. S. Desai and J. S. R. Alex, “IoT based air pollution monitoring and predictor system on Beagle bone black,†2017 Int. Conf. Nextgen Electron. Technol. Silicon to Software, ICNETS2 2017, pp. 367–370, 2017.

      [25] S. Manna, S. S. Bhunia, and N. Mukherjee, “Vehicular Pollution Monitoring Using loT,†IEEE Int. Conf. Recent Adv. Innov. Eng., pp. 1–5, 2014.

      [26] R. Rushikesh and C. M. R. Sivappagari, “Development of IoT based vehicular pollution monitoring system,†Proc. 2015 Int. Conf. Green Comput. Internet Things, ICGCIoT 2015, pp. 779– 783, 2016.

      [27] T. Perumal, N. Sulaiman, and C. Y. Leong, “Internet of Things ( IoT ) Enabled Water Monitoring System,†2015 IEEE 4th Glob. Conf. Consum. Electron. Internet, pp. 86–87, 2015.

      [28] P. Verma et al., “Towards an IoT based water management system for a campus,†2015 IEEE 1st Int. Smart Cities Conf. ISC2 2015, 2015.

      [29] N. Cherukutota and S. Jadhav, “Architectural framework of smart water meter reading system in IoT environment,†2016 Int. Conf. Commun. Signal Process., vol. 400019, pp. 0791–0794, 2016.

      [30] S. Wadekar, V. Vakare, R. Prajapati, S. Yadav, and V. Yadav, “Smart Water Management Using IOT,†2016 5th Int. Conf. Wirel. Networks Embed. Syst., pp. 1–4, 2016.

      [31] M. Suresh, U. Muthukumar, and J. Chandapillai, “A novel smart water-meter based on IoT and smartphone app for city distribution management,†TENSYMP 2017 - IEEE Int. Symp. Technol. Smart Cities, pp. 1–5, 2017.

      [32] C. Z. Myint, L. Gopal, and Y. L. Aung, “WSN-based reconfigurable water quality monitoring system in IoT environment,†ECTI-CON 2017 - 2017 14th Int. Conf. Electr. Eng. Comput. Telecommun. Inf. Technol., pp. 741–744, 2017.

      [33] S. Athani, C. H. Tejeshwar, M. M. Patil, P. Patil, and R. Kulkarni, “Soil moisture monitoring using IoT enabled arduino sensors with neural networks for improving soil management for farmers and predict seasonal rainfall for planning future harvest in North Karnataka-India,†Proc. Int. Conf. IoT Soc. Mobile, Anal. Cloud, I- SMAC 2017, pp. 43–48, 2017.

      [34] H. N. Saha et al., “Pollution Control using Internet of Things ( IoT ),†pp. 65–68, 2017.

      [35] P. Salunke and J. Kate, “Advanced smart sensor interface in internet of things for water quality monitoring,†2017 Int. Conf. Data Manag. Anal. Innov., pp. 298–302, 2017.

      [36] N. Satiya, V. Varu, A. Gadagkar, and D. Shaha, “Optimization of Water Consumption Using Dynamic Quota based Smart Water Management System,†2017 IEEE Reg. 10 Symp., no. 978–1–5090–6255–3/17, 2017.

      [37] M. Saravanan, A. Das, and V. Iyer, “Smart water grid management using LPWAN IoT technology,†GIoTS 2017 - Glob. Internet Things Summit, Proc., 2017.

      [38] G. Suciu, L. Bezdedeanu, A. Vasilescu, and V. Suciu, “Unified Intelligent Water Management Using Cyberinfrastructures Based on Cloud Computing and IoT,†Proc. - 2017 21st Int. Conf. Control Syst. Comput. CSCS 2017, pp. 606–611, 2017.

      [39] C. Rajurkar, S. R. S. Prabaharan, and S. Muthulakshmi, “IoT based water management,†Proc. Int. Conf. Nextgen Electron. Technol. Silicon to Softw., pp. 255–259, 2017.

      [40] S. Salvi et al., “Cloud Based Data Analysis and Monitoring of Smart Multi-level Irrigation System Using IoT,†2017 Int. Conf. I- SMAC (IoT Soc. Mobile, Anal. Cloud), pp. 752–757, 2017.

      [41] I. I. Conference, G. Energy, and H. Technologies, “Intelligent Irrigation System – an Iot Based,†pp. 1–5.

      [42] A. J. Rau, J. Sankar, A. R. Mohan, D. Das Krishna, and J. Mathew, “IoT Based Smart Irrigation System and Nutrient Detection with Disease Analysis,†pp. 3–6, 2017.

      [43] M. A. Culman et al., “A Novel Application for Identification of Nutrient Deficiencies in Oil Palm Using the Internet of Things,†2017 5th IEEE Int. Conf. Mob. Cloud Comput. Serv. Eng., pp. 169– 172, 2017.

      [44] R. Morello, C. De Capua, G. Fulco, and S. C. Mukhopadhyay, “A smart power meter to monitor energy flow in smart grids: The role of advanced sensing and iot in the electric grid of the future,†IEEE Sens. J., vol. 17, no. 23, pp. 7828–7837, 2017.

      [45] W. Hlaing, S. Thepphaeng, V. Nontaboot, N. Tangsunantham, T. Sangsuwan, and C. Pira, “Implementation of WiFi-Based single phase smart meter for internet of things (IoT),†2017 Int. Electr. Eng. Congr. iEECON 2017, no. March, pp. 8–10, 2017.

      [46] P. H. Kulkarni, P. D. Kute, and V. N. More, “IoT based data processing for automated industrial meter reader using Raspberry Pi,†2016 Int. Conf. Internet Things Appl. IOTA 2016, pp. 107–111, 2016.

      [47] R. Bhilare and S. Mali, “IoT based smart home with real time E- metering using E-controller,†12th IEEE Int. Conf. Electron. Energy, Environ. Commun. Comput. Control (E3-C3), INDICON 2015, pp. 1–6, 2016.

      [48] M. Sanduleac, C. L. Chimirel, M. Eremia, L. Toma, C. Cristian, and D. Stanescu, “Unleashing Smart Cities efficient and sustainable energy policies with IoT based Unbundled Smart Meters,†2016 IEEE Int. Conf. Emerg. Technol. Innov. Bus. Pract. Transform. Soc. EmergiTech 2016, no. 646184, pp. 112–117, 2016.

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    Shanmukha Sai, Y., & Kiran Kumar, K. (2018). Internet of things and its applications. International Journal of Engineering & Technology, 7(2.7), 422-427. https://doi.org/10.14419/ijet.v7i2.7.10758