A Primer on Internet of Things Ecosystem and 5G Networks

Author(s):  
Dillip Kumar Rath ◽  
Ajit Kumar
2017 ◽  
Vol 2017 ◽  
pp. 1-13 ◽  
Author(s):  
Yulong Fu ◽  
Zheng Yan ◽  
Jin Cao ◽  
Ousmane Koné ◽  
Xuefei Cao

Internet of Things (IoT) transforms network communication to Machine-to-Machine (M2M) basis and provides open access and new services to citizens and companies. It extends the border of Internet and will be developed as one part of the future 5G networks. However, as the resources of IoT’s front devices are constrained, many security mechanisms are hard to be implemented to protect the IoT networks. Intrusion detection system (IDS) is an efficient technique that can be used to detect the attackers when cryptography is broken, and it can be used to enforce the security of IoT networks. In this article, we analyzed the intrusion detection requirements of IoT networks and then proposed a uniform intrusion detection method for the vast heterogeneous IoT networks based on an automata model. The proposed method can detect and report the possible IoT attacks with three types: jam-attack, false-attack, and reply-attack automatically. We also design an experiment to verify the proposed IDS method and examine the attack of RADIUS application.


Author(s):  
Neetu Faujdar

Pervasive computing has been greatly supported by the internet of things. The use of internet of things has created the environment that helps in the management of the different modules that are the part of the complete system, which can work effectively without the interference with the other components of the system. The cloud environment with the internet of things can help in getting the greater extend of data sharing. Little attention has been provided to the security of the various stakeholders that are the part of the system. IoT cloud integration involved privacy, security, and personal safety risk of the stakeholders. Not only are these types of security attacks possible, but there is also the possibility of attack on the IoT components like hardware manipulation to disrupt the services. As we are on the network, all the communication attacks of network are also possible. This chapter will cover common aspects of regarding the cloud and internet of things (IOT) with 5G networks.


2020 ◽  
Vol 71 (2) ◽  
pp. 131-137
Author(s):  
Anisur Rahman Asif ◽  
Fatema Zahra ◽  
Mohammad Abdul Matin

AbstractThe 5G cellular network technology, in collaboration with Internet of Things (IoT), is envisaged to connect the world together through a flawless Internet connection between devices and sensors. The things in IoT term can be of any smart devices or Internet-enabled sensors that can share information in order to perform a task collectively or individually. On the other hand, Cognitive Internet of Things plays a vital role in utilizing available spectrum for 5G networks. Addition of cognitive feature to the things can allow decision making capability, thereby reducing the overall traffic congestion and improving the efficiency of the whole IoT system. Therefore, it is of great concern to develop an intelligent network to address a few challenges such as heterogeneity and volume of devices in 5G. The aim of this article is to provide a critical review of existing IoT communication Technologies and highlight several challenges and their potential solutions associated with Cognitive IoT based 5G networks.


Author(s):  
Е.В. ТОНКИХ ◽  
А.И. ПАРАМОНОВ ◽  
А.Е. КУЧЕРЯВЫЙ

Рассмотрен подход к моделированию неоднородной структуры сетей высокой плотности. Предлагается использование геометрических фракталов для моделирования структуры сети и дается пример использования в этих целях фрагмента кривой Гильберта. Представлен метод построения модели сети интернета вещей высокой плотности и приводятся результаты моделирования. Вводятся параметры модели, позволяющие описать особенности ее структуры, связанные со свойством самоподобия. Предложенная модель и полученные результаты могут быть полезны в задачах моделирования сетей 5G. The paper considers an approach to modeling the heterogeneous structure of high-density networks. The use of geometric fractals for modeling the structure of the network is proposed and an example of using the Hilbert curve for this purpose is given. A method for constructing a model of the network of high-density Internet of things is proposed and simulation results are presented. The proposed model and the results obtained can be useful in 5G networks modeling.


Future production networks (5G) will power employ new technological technologies toward convene the supplies of broadband admittance and wireless access ubiquitously and anywhere elevated frequency with mobile availability, and convergence of huge numbers of policy (Internet of Things (IoT)) within an especially consistent plus reasonable means. The potential attack with safety services inside 5G wireless network be then outline by the understanding of novel repair values and original practice cases. We hit 5G using open partners through aphasia approaches industries. The eNB LTE is a master node, and gNB is a master node as well as Massive MIMO (Beam Formulation) for Mobile use. In this 5G Technology use and Smart City and IoT Extending the current Internet and linking, contact, and inter-networking between computer and physical object or' things' is a growing trend which is offending referred to as the Internet of Things. This paper provides approaches to these problems and roadmap for stable 5G networks in the future.


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