Design and Development of A Secure and Latent Communication System for IOT Devices
Design and Development of A Secure and Latent Communication System for IOT Devices
Ekundayo Peter, Buremoh
School of Computing, Engineering & Digital Technology
Teesside University, Middlesborough UK.
dayourburemoh@gmail.com
Abstract
This project centers on the conception and implementation of a resilient communication framework customized for the Internet of Things, tackling the twin obstacles of security and latency. The suggested solution strengthens data integrity, confidentiality, and authenticity in Internet of Things communication channels by utilizing cutting-edge cryptographic approaches. Modern encryption techniques and safe key management procedures are included into the system to reduce the possibility of illegal access, data manipulation, and eavesdropping. Because many IoT devices have limited resources, the research also investigates lightweight cryptography techniques to reduce computational overhead. By implementing effective data transmission techniques and optimizing communication protocols, latency reduction can be achieved. Considering variables including network congestion, data packet priority, and adaptive communication tactics, the study explores unique approaches for decreasing latency in Internet of Things networks. The IoT ecosystem performs better overall and responds more quickly thanks to real-time applications like remote monitoring and control that gain from shorter communication delays. Additionally, the study considers the suggested communication system's scalability and interoperability, guaranteeing a smooth integration with a variety of IoT platforms and devices. To determine how well the system works in terms of security, latency reduction, and interoperability with other IoT designs, a thorough review is carried out. The findings of this study further the development of latency-aware, secure communication paradigms that are specifically designed to meet the demands of Internet of Things environments. In addition to improving the general dependability and robustness of IoT networks, the proposed system establishes the foundation for the ongoing expansion and assimilation of IoT technologies throughout many industries.