Abstract
Internet of things (IoT) is a disruptive technology of technical, economic and social consequence, where consumer durable goods, cars, utility components, sensors and other daily objects are linked with internet connectivity and data analysis capability tools that have changed the way, and manner people live and work. The massive deployment of IoT gadgets guarantees numerous ways our lives will be revolutionized, and from the consumers’ point of view, IoT aspects which include home automation, internet-enabled appliances and power management devices are making mankind to realize the smart-home vision thereby bringing more security and energy efficacy. In this paper, an extensive review of IoT devices and its application is provided. The emerging areas, components, and adoption driven factors are disc used and summarized. The Internet of Things adoption by individuals and organizations is feasible owing to the fact that the prices of sensors have fallen significantly, and more connected devices are projected to reach 75 billion by the year 2025.
Access this chapter
Tax calculation will be finalised at checkout
Purchases are for personal use only
Similar content being viewed by others
References
Packard, N.: Three kinds of demand pull for the ARPANET into the Internet. Cogent Soc. Sci. 6(1), 1–21 (2020)
Dechouniotis, D., Athanasopoulos, N., Leivadeas, A.: Edge computing resource allocation for dynamic networks: the DRUID-NET vision and perspective. Sensors 20(2191), 1–18 (2020)
Amalraj, J.J., Banumathi, S., John, J.J.: IOT sensors and applications: a survey. Int. J. Sci. Technol. Res. 8(8), 998–1003 (2019)
Asghari, M., Yousefi, S., Niyato, D.: Pricing strategies of IoT wide area network service providers with complementary services included. J. Netw. Comput. Appl. 147, 1–19 (2019)
Hassan, M.U., Rehmani, M.H., Chen, J.: Privacy preservation in blockchain based IoT systems: integration, issues, prospects, challenges, and future research directions. Future Gener. Comput. Syst. 97, 512–529 (2019)
de Morais, C.M., Sadok, D., Kelner, J.: An IoT sensor and scenario survey for data researchers. J. Braz. Comput. Soc. 25(1), 1–17 (2019). Article number: 4
Mistry, I., Tanwar, S., Tyagi, S., Kumar, N.: Blockchain for 5G-enabled IoT for industrial automation: a systematic review, solutions, and challenges. Mech. Syst. Sig. Process. 135, 106382 (2019)
AlMetwally, S.A.H., Hassan, M.K., Mourad, M.H.: Real time Internet of Things (IoT) based water quality management system. Procedia CIRP 91, 478–485 (2020)
Buyya, R., Dastjerdi, A.V. (eds.): Internet of Things: Principles and Paradigms. Elsevier, Amsterdam (2016)
Pratap, R., Javaid, M., Haleem, A., Suman, R.: Internet of Things ( IoT ) applications to fight against COVID-19 pandemic. Diabetes Metab. Syndr. Clin. Res. Rev. 14(4), 521–524 (2020)
Hassan, W.H.: Current research on Internet of Things (IoT) security: a survey. Comput. Netw. 148, 283–294 (2019)
Ye, L.: Study on embedded system in monitoring of intelligent city pipeline network. Comput. Commun. 153, 451–458 (2020)
Rathee, G., Sharma, A., Kumar, R., Iqbal, R.: A secure communicating things network framework for using blockchain technology. Ad Hoc Netw. 94, 1–15 (2019)
Cao, K., Liu, Y., Meng, G., Sun, Q.: An overview on edge computing research. IEEE Access 8, 85714–85728 (2020)
Song, Y., Jiang, J., Wang, X., Yang, D., Bai, C.: Clinical eHealth prospect and application of Internet of Things technology for prevention of SARIs. Clin. eHealth 3, 1–4 (2020)
Moyer, S.: IoT sensors and actuators. IEEE Internet Things Mag. 2(3), 10 (2019)
Sehrawat, D., Gill, N.S.: Smart sensors: analysis of different types of IoT sensors. In: Proceedings of the International Conference on Trends in Electronics and Informatics, pp. 523–528. IEEE (2019)
Tobin, C., Bailey, D.W., Trotter, M.G., O’Connor, L.: Sensor based disease detection: a case study using accelerometers to recognize symptoms of Bovine Ephemeral Fever. Comput. Electron. Agric. 175, 105605 (2020)
Phan, L.A., Kim, L.: Breaking down the compatibility problem in smart homes: a dynamically updatable gateway platform. Sensors 20(10), 2783 (2020)
Minh, P., An, L., Kim, T.: A study of the Z-wave protocol: implementing your own smart home gateway. In: 3rd International Conference on Computer and Communication Systems, pp. 411–415 (2018)
Zeadally, S., Siddiqui, F., Baig, Z.: 25 years of bluetooth technology. Future Internet 11(194), 1–24 (2019)
Lee, I.: The Internet of Things for enterprises: an ecosystem, architecture, and IoT service business model. Internet Things 7, 100078 (2019)
Asghari, M., Yousefi, S., Niyato, D.: Pricing strategies of IoT wide area network service providers with complementary services included. J. Netw. Comput. Appl. 147, 102426 (2019)
Adenugba, F., Misra, S., Maskeliūnas, R., Damaševičius, R., Kazanavičius, E.: Smart irrigation system for environmental sustainability in Africa: an Internet of Everything (IoE) approach. Math. Biosci. Eng. 16, 5490–5503 (2019)
Arshad, J., Azad, M.A., Abdeltaif, M.M., Salah, K.: An intrusion detection framework for energy constrained IoT devices. Mech. Syst. Sig. Process. 136, 106436 (2019)
Deng, Z.W.: The embedded modules solution of household Internet of Things System and the future development. Procedia Comput. Sci. 166, 350–356 (2020)
Wang, J., Chen, M., Zhou, J., Li, P.: Data communication mechanism for greenhouse environment monitoring and control: an agent-based IoT system. Inf. Process. Agric. 7(3), 444–455 (2019)
Glaroudis, D., Iossifides, A., Chatzimisios, P.: Survey, comparison and research challenges of IoT application protocols for smart farming. Comput. Netw. 168, 107037 (2020)
Bruneo, D., Distefano, S., Giacobbe, M., Minnolo, A.L., Longo, F., Merlino, G., Puliafito, C.: An IoT service ecosystem for smart cities: the SMARTME project. Internet Things 5, 12–33 (2019)
Sestino, A., Irene, M., Piper, L., Guido, G.: Internet of Things and Big Data as enablers for business digitalization strategies. Technovation 98, 102173 (2020)
Tang, L., Hu, H.: computation offloading & resource allocation for the Internet of Things in energy-constrained MEC-enabled HetNets. IEEE Access 8, 47509–47521 (2020)
Hernandez, J., Daza, K., Florez, H., Misra, S.: Dynamic interface and access model by dead token for IoT systems. In: International Conference on Applied Informatics, pp. 485–498. Springer, Cham, November 2019
Samuel, V., Misra, S., Nicholas, O.: Internet of Things (IoTs) and its application to road navigation and usage problem. In: Asia-Pacific World Congress on Computer Science and Engineering, pp. 1–5. IEEE, November 2014
Atayero, A.A., Popoola, S.I., Williams, R., Badejo, J.A., Misra, S.: Smart city waste management system using Internet of Things and cloud computing. In: International Conference on Intelligent Systems Design and Applications, pp. 601–611, December 2019
Olowu, M., Yinka-Banjo, C., Misra, S., Oluranti, J., Ahuja, R.: Internet of Things: demystifying smart cities and communities. In: International Conference on Advances in Computational Intelligence and Informatics, pp. 363–371. Springer, December 2019
Author information
Authors and Affiliations
Corresponding author
Editor information
Editors and Affiliations
Rights and permissions
Copyright information
© 2021 The Author(s), under exclusive license to Springer Nature Switzerland AG
About this paper
Cite this paper
Yunana, K., Alfa, A.A., Misra, S., Damasevicius, R., Maskeliunas, R., Oluranti, J. (2021). Internet of Things: Applications, Adoptions and Components - A Conceptual Overview. In: Abraham, A., Hanne, T., Castillo, O., Gandhi, N., Nogueira Rios, T., Hong, TP. (eds) Hybrid Intelligent Systems. HIS 2020. Advances in Intelligent Systems and Computing, vol 1375. Springer, Cham. https://doi.org/10.1007/978-3-030-73050-5_50
Download citation
DOI: https://doi.org/10.1007/978-3-030-73050-5_50
Published:
Publisher Name: Springer, Cham
Print ISBN: 978-3-030-73049-9
Online ISBN: 978-3-030-73050-5
eBook Packages: Intelligent Technologies and RoboticsIntelligent Technologies and Robotics (R0)