Cortés-Leal Alejandro, Del-Valle-Soto Carolina, Cardenas Cesar, Valdivia Leonardo J, Del Puerto-Flores Jose Alberto
Facultad de Ingeniería, Universidad Panamericana, Álvaro del Portillo 49, Zapopan 45010, Jalisco, Mexico.
Tecnologico de Monterrey, Universidad Internacional de La Rioja (UNIR) en Mexico, Mexico City 03600, Mexico.
Sensors (Basel). 2021 Dec 28;22(1):178. doi: 10.3390/s22010178.
The emergence of Industry 4.0 technologies, such as the Internet of Things (IoT) and Wireless Sensor Networks (WSN), has prompted a reconsideration of methodologies for network security as well as reducing operation and maintenance costs, especially at the physical layer, where the energy consumption plays an important role. This article demonstrates through simulations and experiments that, while the cooperative scheme is more efficient when a WSN is at normal operating conditions, the collaborative scheme offers more enhanced protection against the aggressiveness of jamming in the performance metrics, thus making it safer, reducing operation and maintenance costs and laying the foundations for jamming mitigation. This document additionally offers an algorithm to detect jamming in real time. Firstly, it examines the characteristics and damages caused by the type of aggressor. Secondly, it reflects on the natural immunity of the WSN (which depends on its node density and a cooperative or collaborative configuration). Finally, it considers the performance metrics, especially those that impact energy consumption during transmission.
工业4.0技术的出现,如物联网(IoT)和无线传感器网络(WSN),促使人们重新审视网络安全方法以及降低运营和维护成本,特别是在物理层,能耗在其中起着重要作用。本文通过模拟和实验表明,虽然在WSN处于正常运行条件下时,协作方案更高效,但协作式方案在性能指标方面能提供更强的保护,抵御干扰的攻击性,从而使其更安全,降低运营和维护成本,并为缓解干扰奠定基础。本文还提供了一种实时检测干扰的算法。首先,它研究攻击者类型所造成的特征和损害。其次,它思考WSN的自然抗扰性(这取决于其节点密度以及协作或协同配置)。最后,它考虑性能指标,尤其是那些影响传输过程中能量消耗的指标。