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A Self-Powered Engine Health Monitoring System Based on L-Shaped Wideband Piezoelectric Energy Harvester

机译:基于L型宽带压电能量采集器的自供电发动机健康监测系统

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摘要

Engine health monitoring is very important to maintain the life of engines, and the power supply to sensor nodes is a key issue that needs to be solved. The piezoelectric vibration energy harvester has attracted much attention due to its obvious advantages in configuration, electromechanical conversion efficiency, and output power. However, the narrow bandwidth has restricted its practical application. A self-powered engine health monitoring system was proposed in this paper, and an L-shaped wideband piezoelectric energy harvester was designed and implemented. The L-shaped beam-mass structure and the piezoelectric bimorph cantilever beam structure was combined to form the wideband piezoelectric energy harvester configuration, which realized effective output at both resonance points. The theoretical model and finite element simulation analysis of the wideband piezoelectric energy harvester were proposed and the parameters were optimized based on that to meet the requirement of the vibration frequency of the engine. The experimental results show that the proposed energy harvester can be applied into the automobile engine health monitoring system. Engine signal analysis results also demonstrate that the proposed system can be used for engine health monitoring.
机译:引擎运行状况监视对于维持引擎的使用寿命非常重要,并且传感器节点的电源供应是需要解决的关键问题。压电振动能量收集器由于其在结构,机电转换效率和输出功率方面的明显优势而备受关注。但是,窄带宽限制了其实际应用。提出了一种自供电发动机健康监测系统,并设计并实现了L形宽带压电能量采集器。将L形束质量结构和压电双压电晶片悬臂梁结构结合起来,形成宽带压电能量收集器配置,在两个谐振点实现有效输出。提出了宽带压电能量采集器的理论模型和有限元仿真分析,并在此基础上对参数进行了优化,以满足发动机振动频率的要求。实验结果表明,所提出的能量采集器可以应用于汽车发动机健康监测系统。发动机信号分析结果还表明,该系统可用于发动机健康监测。

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