Department of Information Technology, Netaji Subhas University of Technology, New Delhi 110078, India.
Department of Computer Science, Toronto Metropolitan University, Toronto, ON M5B 2K3, Canada.
Sensors (Basel). 2022 Sep 13;22(18):6928. doi: 10.3390/s22186928.
The Internet of Everything (IoE) is a smart system that interconnects smart entities by incorporating low-cost or low-energy gadgets that are useful for communication with people, processes, data, and devices/things. In such an instantaneously connected environment, network-enabled heterogeneous devices may exhibit non-cooperative behaviour which may lead to the degradation of the network. To address this performance degradation, the proposed Post-quantum based Incentive technique for Non-cooperating nodes in internet of Everything (PINE) protocol provides an end-to-end reliable solution by incorporating location-aware post-quantum encryption in these networks while addressing the non-cooperative behaviour of the nodes by employing an effective strategy in a bi-directional multi-hop relay environment. This proposed protocol further aims to evaluate the consequences of non-cooperative nodes by considering various metrics, namely, number of nodes, message size, execution time, memory consumption, average residual energy, percentage of selfish nodes, and blackhole nodes detection, aiming to achieve significant accuracy in an IoE environment.
万物互联网(IoE)是一个智能系统,通过整合具有通信能力的低成本或低能耗小工具,将智能实体相互连接。在这样一个即时连接的环境中,网络功能的异构设备可能表现出非合作行为,从而导致网络性能下降。为了解决这个性能下降的问题,提出了一种基于后量子的万物互联网中不合作节点激励技术(PINE)协议,通过在这些网络中引入位置感知的后量子加密,提供端到端的可靠解决方案,同时通过在双向多跳中继环境中采用有效的策略来解决节点的不合作行为。该协议进一步旨在通过考虑各种指标,如节点数量、消息大小、执行时间、内存消耗、平均剩余能量、自私节点的百分比和黑洞节点检测,来评估不合作节点的后果,以在 IoE 环境中实现显著的准确性。