A Novel Cyber-Security Approach for Nodal Authentication in IoT Using Dual VPN Tunneling
N. M. Saravana Kumar, S. Balamurugan, Hari K. Prasath, A. Kavinya · Apple Academic Press eBooks · 2021
In the history of the planet Earth, the human race is up against an unimaginable counterpart of the present-day civilization that constitutes more associated devices outnumbering the number of people by 2025. It has been projected that of about 25 billion smart things were already been into existent to the estimated 8.1 billion humans. With an advent of Internet in late nineteenth century, the arduous and time-consuming tasks were addressed with negligible time complexity and the strength of the technology is that it enables a seamless access to almost everyone who uses internet in the globe. With Internet, Connection is possible among the people who are sitting at the two different poles of the world. One of the biggest security concern of the deployment and the commercialization of Internet of Things (IoT) is its own underlying data handling policies 178 and its related compromises in the deployment architectures. Since anyone can access the sensors to spoof and thereby eaves dropping the entire IoT model is also possible and the site would be at high risk. This chapter attempts to propose a novel data handling architecture and policies so as to ensure the security of the model at its highest level. With the advent of Internet technologies and its applications, the increase in the need of data storage, analysis, and accessing becomes inevitable. The idea is to deploy a layered access approach to allocate resources using double encryption using VPN to ensure data security over traffic. In this chapter, the two different methods of providing security to the data communicated over IoT channels have been compared with respect to their respective average response time to the various traffic levels.