IoT Security Based on Content-Centric Networking Architecture

Author(s):  
Mohamed Labbi ◽  
Nabil Kannouf ◽  
Mohammed Benabdellah

The internet of things (IoT) is a concept that is revolutionizing our daily lives along with different areas of industry. All existing objects will be connected to the internet. All the possibilities offered by IoT are very promising. However, setting up these architectures poses various problems. The exponential increase in devices is a challenge to the current internet architecture and represents a major security weakness of the internet of things. Indeed, securing these devices poses a significant security challenge. Thus, the emergence of the internet of things requires the design and deployment of new solutions. In this chapter, the authors propose content-centric networking (CCN) as a potential alternative networking solution for the IoT. The authors show that the implementation of CCN architecture in IoT can address several IoT requirements including security challenges.

2017 ◽  
Vol 129 ◽  
pp. 444-458 ◽  
Author(s):  
Ibrar Yaqoob ◽  
Ejaz Ahmed ◽  
Muhammad Habib ur Rehman ◽  
Abdelmuttlib Ibrahim Abdalla Ahmed ◽  
Mohammed Ali Al-garadi ◽  
...  

Connectivity ◽  
2020 ◽  
Vol 148 (6) ◽  
Author(s):  
S. A. Zhezhkun ◽  
◽  
L. B. Veksler ◽  
S. M. Brezitsʹkyy ◽  
B. O. Tarasyuk

This article focuses on the analysis of promising technologies for long-range traffic transmission for the implementation of the Internet of Things. The result of the review of technical features of technologies, their advantages and disadvantages is given. A comparative analysis was performed. An analysis is made that in the future heterogeneous structures based on the integration of many used radio technologies will play a crucial role in the implementation of fifth generation networks and systems. The Internet of Things (IoT) is heavily affecting our daily lives in many domains, ranging from tiny wearable devices to large industrial systems. Consequently, a wide variety of IoT applications have been developed and deployed using different IoT frameworks. An IoT framework is a set of guiding rules, protocols, and standards which simplify the implementation of IoT applications. The success of these applications mainly depends on the ecosystem characteristics of the IoT framework, with the emphasis on the security mechanisms employed in it, where issues related to security and privacy are pivotal. In this paper, we survey the security of the main IoT frameworks, a total of 8 frameworks are considered. For each framework, we clarify the proposed architecture, the essentials of developing third-party smart apps, the compatible hardware, and the security features. Comparing security architectures shows that the same standards used for securing communications, whereas different methodologies followed for providing other security properties.


Author(s):  
Э.Д. Алисултанова ◽  
Л.К. Хаджиева ◽  
М.З. Исаева

Данная статья посвящена созданию профориентационной (умной) лаборатории, которая призвана сформировать у школьников базовые представления о технологии Интернет вещей (IoT), угрозах кибербезопасности в этой сфере, мотивировать к получению в будущем профильного образования и построению карьеры в области обеспечения безопасности Интернет вещей (IoT) при функционировании умного производства. Обучение школьников в профориентационной лаборатории, построенное на основе применения интерактивных электронных образовательных ресурсов, прежде всего будет позиционировать карьерные возможности будущих специалистов в сфере обеспечения безопасности Интернет вещей (IoT) при функционировании умного производства. В рамках функционирования лаборатории особое внимание обучающихся сконцентрировано на тематиках правовых аспектов обеспечения кибербезопасности, главных тенденциях развития киберугроз в современном глобальном информационном пространстве и мерах, необходимых для их нейтрализации. This article is devoted to the creation of a career-oriented (smart) laboratory, which is designed to formulate in schoolchildren basic ideas about the Internet of Things (IoT) technology, cyber security threats in this area, motivate to receive specialized education in the future and build a career in the field of Internet things (IoT) security) with the functioning of smart manufacturing. The training of schoolchildren in a vocational guidance laboratory, based on the use of interactive electronic educational resources, will primarily position the career opportunities of future specialists in the field of Internet of Things (IoT) security in the operation of smart manufacturing. Within the framework of the functioning of the laboratory, special attention of students is concentrated on the topics of the legal aspects of ensuring cyber security, the main trends in the development of cyber threats in the modern global information space and the measures necessary to neutralize them.


Author(s):  
Muawya N. Al Dalaien ◽  
Ameur Bensefia ◽  
Salam A. Hoshang ◽  
Abdul Rahman A. Bathaqili

In recent years the Internet of Things (IoT) has rapidly become a revolutionary technological invention causing significant changes to the way both corporate computing systems, and even household gadgets and appliances, are designed and manufactured. The aim of this chapter is to highlight the security and privacy issues that may affect the evolution of IoT technology. The privacy issues are discussed from customer perspectives: first, the IoT privacy concern where the privacy debates on IoT and the IoT privacy that reflected from users' perspective based on the examination of previous researches results. In addition, the different architectures for IoT are discussed. Finally, the chapter discusses the IoT security concern by collecting, analyzing and presenting the major IoT security concerns in the literature as well as providing some potential solutions to these concerns.


Author(s):  
Mohammad Tariq Banday

The chapter discusses various security challenges in the design of the internet of things and their possible solutions. After presenting a precise introduction to the internet of things, its applications, and technologies enabling it, the chapter discusses its various architectures and models which follow with an introduction of development kits, boards, platforms, hardware, software, and devices used in the internet of things. A concise explanation and discussion on the internet of things standards and protocols with emphasis on their security is presented. Next, various possible security threats and attacks to the internet of things are presented. The subsequent sections of the chapter discuss identified security challenges at individual layers of various models along with their possible solutions. It further presents cryptographic and lightweight cryptographic primitives for the internet of things, existing use of cryptography in the internet of things protocols, security challenges, and its prospectus.


Author(s):  
Anthony Bolton ◽  
Leila Goosen ◽  
Elmarie Kritzinger

The purpose of this chapter is to address challenges related to the integration and implementation of the developing internet of things (IoT) into the daily lives of people. Demands for communication between devices, sensors, and systems are reciprocally driving increased demands for people to communicate and manage the growing digital ecosystem of the IoT and an unprecedented volume of data. A larger study was established to explore how digital transformation through unified communication and collaboration (UC&C) technologies impact the productivity and innovation of people in the context of one of the world's largest automotive enterprises, General Motors (GM). An analysis and exploration of this research milieu, supported by a critical realist interpretation of solutions, suggested that recommendations can be made that the integration and implementation of digital transformation, delivered via UC&C technologies, impact productivity and opportunity for driving innovation within a global automotive enterprise.


2018 ◽  
Vol 7 (4.36) ◽  
pp. 700
Author(s):  
N. Koteswara Rao ◽  
Gandharba Swain

The proliferation of smart objects with capability of sensing, processing and communication has grown in recent years. In this scenario, the Internet of Things (IoT) connects these objects to the Internet and provides communication with users and devices. IoT enables a huge amount of new applications, with which academics and industries can benefit, such as smart cities, health care and automation. In this environment, compose of constrained devices, the widespread adoption of this paradigm depends of security requirements like secure communication between devices, privacy and anonymity of its users. This paper presents the main security challenges and solutions to provide authentication and authorization on the Internet of Things. 


IEEE Access ◽  
2020 ◽  
Vol 8 ◽  
pp. 219709-219743
Author(s):  
Shapla Khanam ◽  
Ismail Bin Ahmedy ◽  
Mohd Yamani Idna Idris ◽  
Mohamed Hisham Jaward ◽  
Aznul Qalid Bin Md Sabri

Sensors ◽  
2019 ◽  
Vol 19 (19) ◽  
pp. 4121 ◽  
Author(s):  
Alberto Giaretta ◽  
Nicola Dragoni ◽  
Fabio Massacci

Cybersecurity is one of the biggest challenges in the Internet of Things (IoT) domain, as well as one of its most embarrassing failures. As a matter of fact, nowadays IoT devices still exhibit various shortcomings. For example, they lack secure default configurations and sufficient security configurability. They also lack rich behavioural descriptions, failing to list provided and required services. To answer this problem, we envision a future where IoT devices carry behavioural contracts and Fog nodes store network policies. One requirement is that contract consistency must be easy to prove. Moreover, contracts must be easy to verify against network policies. In this paper, we propose to combine the security-by-contract (S × C) paradigm with Fog computing to secure IoT devices. Following our previous work, first we formally define the pillars of our proposal. Then, by means of a running case study, we show that we can model communication flows and prevent information leaks. Last, we show that our contribution enables a holistic approach to IoT security, and that it can also prevent unexpected chains of events.


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