IoT and Relaying Aided Transmission Technologies for Monitoring Electrical Equipment Status

Yawen Yi, Chuan Chen, Ziran Chen, Ganxin Jie, Yong Tu, Qijun Zhang
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Abstract

This paper presents a novel approach to monitoring the status of electrical equipment using Internet of Things (IoT) and relaying-aided transmission technologies, where data rate is used as a key metric for evaluating system monitoring performance. In this framework, relaying plays a pivotal role, enhancing the robustness and efficiency of data transmission in the monitoring process. We employ the optimal relay selection algorithms to identify and employ the most effective relay to assist in the transmission, thereby optimizing the communication link between the electrical equipment and the monitoring system. To provide a comprehensive understanding of the system's capabilities, we delve into the analytical aspects by deriving expressions for the data rate. These expressions offer insights into the theoretical performance limits and the factors influencing the efficiency of the system. The theoretical framework is further complemented by a series of simulations. These simulations validate the analytical models developed in the study, and provide practical scenarios to demonstrate the real-world applicability and effectiveness of the proposed IoT and relaying-aided transmission technologies in monitoring electrical equipment.
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用于监控电气设备状态的物联网和继电器辅助传输技术
本文提出了一种利用物联网(IoT)和中继辅助传输技术监控电气设备状态的新方法,其中数据传输速率被用作评估系统监控性能的关键指标。在这一框架中,中继发挥了关键作用,提高了监测过程中数据传输的稳健性和效率。我们采用最佳中继选择算法来识别和采用最有效的中继来协助传输,从而优化电气设备与监控系统之间的通信链路。为了全面了解系统的功能,我们深入分析了数据传输速率的表达式。这些表达式有助于深入了解系统的理论性能极限和影响效率的因素。一系列模拟进一步补充了理论框架。这些模拟验证了研究中开发的分析模型,并提供了实际场景,以证明拟议的物联网和中继辅助传输技术在监控电气设备方面的实际适用性和有效性。
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