Semantic Internet of Things (IoT)
Interoperability Using Software Defined
Network (SDN) and Network Function
Virtualization (NFV)
Jayashree R. Prasad, Shailesh P. Bendale, and Rajesh S. Prasad
Abstract In the coming few years, there is going to be rapid advancement in terms
of technology like 5G, 6G, etc. When we think about 5G, the performance of the
internet is going to increase multifold. The 5G i.e. fifth-generation network is going
to be very heterogeneous. There is a need for a standardized solution to the issues in
this technology. In this work, we are trying to understand the problems specifically
in IoT (Internet of Things) area of 5G. In the literature survey, we found out that
various solutions have been proposed in the area of the Internet of Things, but there is
a lack of some generic solutions for all IoT projects. Every project works excellent in
its closed and specified environment. When we try to connect multiple IoT projects,
there is a big problem of interoperability. Some ICT standardization organizations
have proposed some solutions to interoperability to overcome this scenario. Few solutions have been proposed by some authors to provide interoperability using semantic
technologies. The solution for this problem of heterogeneous IoT can be provided
using the semantic technologies in combination with that of SDN (Software Defined
Network), NFV (Network Function Virtualization), and Cloud infrastructure.
1 Introduction
In this chapter, we are going to address the Semantic IoT interoperability issues of
heterogeneous IoT devices in 5G, SDN, and NFV, cloud computing, solutions to
overcome those interoperability issues.
J. R. Prasad (B)
Sinhgad College of Engineering, Pune, India
e-mail: jrprasad.scoe@sinhgad.edu
S. P. Bendale
NBN Sinhgad School of Engineering, Pune, India
e-mail: bendale.shailesh@gmail.com
R. S. Prasad
Amity School of Engineering and Technology, Amity University Rajasthan, Jaipur, India
e-mail: rsprasad@jpr.amity.edu
© Springer Nature Switzerland AG 2021
R. Pandey et al. (eds.), Semantic IoT: Theory and Applications, Studies in Computational
Intelligence 941, https://doi.org/10.1007/978-3-030-64619-6_18
399
Interoperability Using Software Defined
Network (SDN) and Network Function
Virtualization (NFV)
Jayashree R. Prasad, Shailesh P. Bendale, and Rajesh S. Prasad
Abstract In the coming few years, there is going to be rapid advancement in terms
of technology like 5G, 6G, etc. When we think about 5G, the performance of the
internet is going to increase multifold. The 5G i.e. fifth-generation network is going
to be very heterogeneous. There is a need for a standardized solution to the issues in
this technology. In this work, we are trying to understand the problems specifically
in IoT (Internet of Things) area of 5G. In the literature survey, we found out that
various solutions have been proposed in the area of the Internet of Things, but there is
a lack of some generic solutions for all IoT projects. Every project works excellent in
its closed and specified environment. When we try to connect multiple IoT projects,
there is a big problem of interoperability. Some ICT standardization organizations
have proposed some solutions to interoperability to overcome this scenario. Few solutions have been proposed by some authors to provide interoperability using semantic
technologies. The solution for this problem of heterogeneous IoT can be provided
using the semantic technologies in combination with that of SDN (Software Defined
Network), NFV (Network Function Virtualization), and Cloud infrastructure.
1 Introduction
In this chapter, we are going to address the Semantic IoT interoperability issues of
heterogeneous IoT devices in 5G, SDN, and NFV, cloud computing, solutions to
overcome those interoperability issues.
J. R. Prasad (B)
Sinhgad College of Engineering, Pune, India
e-mail: jrprasad.scoe@sinhgad.edu
S. P. Bendale
NBN Sinhgad School of Engineering, Pune, India
e-mail: bendale.shailesh@gmail.com
R. S. Prasad
Amity School of Engineering and Technology, Amity University Rajasthan, Jaipur, India
e-mail: rsprasad@jpr.amity.edu
© Springer Nature Switzerland AG 2021
R. Pandey et al. (eds.), Semantic IoT: Theory and Applications, Studies in Computational
Intelligence 941, https://doi.org/10.1007/978-3-030-64619-6_18
399
