Efficient Secure Routing Mechanisms for the Low-Powered IoT Network: A Literature Review

Author:

Hussain Muhammad ZunnurainORCID,Hanapi Zurina MohdORCID

Abstract

The Wireless Sensor Network in the Internet of Things (WSN-IoT) has been flourishing as another global breakthrough over the past few years. The WSN-IoT is reforming the way we live today by spreading through all areas of life, including the dangerous demographic aging crisis and the subsequent decline of jobs. For a company to increase revenues and cost-effectiveness growth should be customer-centered and agile within an organization. WSN-IoT networks have simultaneously faced threats, such as sniffing, spoofing, and intruders. However, WSN-IoT networks are often made up of multiple embedded devices (sensors and actuators) with limited resources that are joined via various connections in a low-power and lossy manner. However, to our knowledge, no research has yet been conducted into the security methods. Recently, a Contiki operating system’s partial implementation of Routing Protocol for Low Power & Lossy Network RPL’s security mechanisms was published, allowing us to evaluate RPL’s security methods. This paper presents a critical analysis of security issues in the WSN-IoT and applications of WSN-IoT, along with network management details using machine learning. The paper gives insights into the Internet of Things in Low Power Networks (IoT-LPN) architecture, research challenges of the Internet of Things in Low Power Networks, network attacks in WSN-IoT infrastructures, and the significant WSN-IoT objectives that need to be accompanied by current WSN-IoT frameworks. Several applied WSN-IoT security mechanisms and recent contributions have been considered, and their boundaries have been stated to be a significant research area in the future. Moreover, various low-powered IoT protocols have been further discussed and evaluated, along with their limitations. Finally, a comparative analysis is performed to assess the proposed work’s performance. The study shows that the proposed work covers a wide range of factors, whereas the rest of the research in the literature is limited.

Funder

Geran Putra Berimpak Universiti Putra Malaysia

Publisher

MDPI AG

Subject

Electrical and Electronic Engineering,Computer Networks and Communications,Hardware and Architecture,Signal Processing,Control and Systems Engineering

Reference109 articles.

1. Evans, D. (2022, December 11). The Internet of Things: How the Next Evolution of the Internet Is Changing Everything. Available online: http://www.cisco.com/web/about/ac79/docs/innov/IoT_IBSG_0411FINAL.

2. The Internet of Things (IoT) and Cyber Security: Vulnerabilities, Threats, Intruders and Attacks;Lakshmi;IOSR J. Comput. Eng. (IOSR-JCE),2017

3. Libelium (2022, December 11). 50 Sensor Applications for a Smarter World. Available online: https://www.libelium.com/libeliumworld/top-50-iot-sensor-applications-ranking.

4. Jimenez, J., Koster, M., and Tschofenig, H. IPSO smart objects. In a Position paper for the IOT Semantic Interoperability Workshop, 2016.

5. Internet of things: Architectures, protocols, and applications;Sethi;J. Electr. Comput. Eng.,2017

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