Xiong Suqin, Li Qiuyang, Yang Aichao, Zhu Liang, Li Peng, Xue Kaiwen, Yang Jin
China Electric Power Research Institute Co., Ltd., Beijing 100192, China.
State Grid Jiangxi Electric Power Co., Ltd., Power Supply Service Management Center, Nanchang 330032, China.
Sensors (Basel). 2023 Nov 18;23(22):9267. doi: 10.3390/s23229267.
The energy harvesters used in self-powered wireless sensing technology, which has the potential to completely solve the power supply problem of the sensing nodes from the source, usually require mechanical movement or operate in harsh environments, resulting in a significant reduction in device lifespan and reliability. Therefore, the influencing factors and failure mechanisms of the operating status of self-powered wireless sensors were analyzed, and an innovative evaluation index system was proposed, which includes 4 primary indexes and 13 secondary indexes, including energy harvesters, energy management circuits, wireless communication units, and sensors. Next, the weights obtained from the subjective analytic hierarchy process (AHP) and objective CRITIC weight method were fused to obtain the weights of each index. A self-powered sensor evaluation scheme (FE-SPS) based on fuzzy comprehensive evaluation was implemented by constructing a fuzzy evaluation model. The advantage of this scheme is that it can determine the current health status of the system based on its output characteristics. Finally, taking vibration energy as an example, the operational status of the self-powered wireless sensors after 200 h of operation was comprehensively evaluated. The experimental results show that the test self-powered wireless sensor had the highest score of "normal", which is 0.4847, so the evaluation result was "normal". In this article, a reliability evaluation strategy for self-powered wireless sensor was constructed to ensure the reliable operation of self-powered wireless sensors.
自供电无线传感技术中使用的能量收集器,有可能从源头上彻底解决传感节点的电源问题,但通常需要机械运动或在恶劣环境中运行,导致设备寿命和可靠性大幅降低。因此,分析了自供电无线传感器运行状态的影响因素和失效机制,提出了一种创新的评估指标体系,该体系包括4个一级指标和13个二级指标,涵盖能量收集器、能量管理电路、无线通信单元和传感器。接下来,将主观层次分析法(AHP)和客观CRITIC权重法得到的权重进行融合,得到各指标的权重。通过构建模糊评价模型,实现了基于模糊综合评价的自供电传感器评估方案(FE-SPS)。该方案的优点是能够根据系统的输出特性确定其当前的健康状态。最后,以振动能量为例,对自供电无线传感器运行200小时后的运行状态进行了综合评估。实验结果表明,测试的自供电无线传感器得分最高的是“正常”,为0.4847,因此评估结果为“正常”。本文构建了自供电无线传感器的可靠性评估策略,以确保自供电无线传感器的可靠运行。