Joseph Salomon Manga Tonga V, Henri Pascal-Will Mpoh Lobe, Yannick Malong, Ebenezer Maka Maka, Luc Ihonock Eyembe, Jean-François Essiben Dikoundou, Moulema Douala Paul-Marie, Joe Yong Suk
Laboratory of Electrical Electronics Automation and Telecommunication National Higher polytechnic school of Douala, University of Douala, P.O. Box 8580, Douala, Cameroon.
Laboratory of Computer Science Data Science and Artificial Intelligence National Higher polytechnic school of Douala, University of Douala, P.O. Box 8580, Douala, Cameroon.
MethodsX. 2025 Jun 25;15:103465. doi: 10.1016/j.mex.2025.103465. eCollection 2025 Dec.
IoT is a technology that can be found everywhere in our daily lives. The bulk of Internet of Things (IoT) technologies relies on wireless transmissions; however, these are often subjected to security threats such as communication intercepts. The aims of this paper is to address these threats by suggesting a method based on a random distribution of communication frequencies. The proposed approach was tested using LoRa technology within an experimental testbed. The validation results show that randomly changing communication frequencies introduce a processing delay of less than one second during transmission and reception. Furthermore, the experiments showed that the proposed strategy enhances coexistence with other LoRa devices. The performance achieved is promising for secure and efficient data transmission applications.•The concentrate on the vulnerabilities that arise in the network of IoT systems at the physical layer•We propose a method to close this security gap by using a random allocation of communication frequency between LoRa cards.•The results show that the coexistence between IoT is possible and the random allocation of communication frequencies introduced less than a second in transmission and reception of packets.
物联网是一种在我们日常生活中随处可见的技术。物联网(IoT)技术的大部分依赖于无线传输;然而,这些传输经常受到诸如通信拦截等安全威胁。本文的目的是通过提出一种基于通信频率随机分布的方法来应对这些威胁。所提出的方法在一个实验测试平台内使用LoRa技术进行了测试。验证结果表明,随机改变通信频率在发送和接收过程中引入的处理延迟不到一秒。此外,实验表明所提出的策略增强了与其他LoRa设备的共存性。所实现的性能对于安全高效的数据传输应用很有前景。
•关注物联网系统网络在物理层出现的漏洞
•我们提出一种方法,通过在LoRa卡之间随机分配通信频率来弥补这一安全差距。
•结果表明,物联网之间的共存是可能的,并且通信频率的随机分配在数据包的发送和接收中引入的延迟不到一秒。