Huang Jie, Xu Cheng, Ma Nan, Zhou Qinghui, Ji Zhaohua, Jia Chunxia, Xiao Shan, Wang Peng
Beijing Information Technology College, Beijing 100015, China.
Beijing Key Laboratory of Information Service Engineering, Beijing Union University, Beijing 100101, China.
Micromachines (Basel). 2023 Feb 20;14(2):491. doi: 10.3390/mi14020491.
With increasing consumption of energy and increasing environmental pollution, research on capturing the vibration energy lost during transportation and vehicle driving is growing rapidly. There is a large amount of vibration energy in the automobile exhaust system that can be recycled. This paper proposes a self-powered intelligent device (SPID) using a piezoelectric energy generator. The SPID includes a piezoelectric generator and sensor unit, and the generator is installed at the end of the automobile exhaust system. The generator adopts a parallel structure of four piezoelectric power generation units, and the sensing unit comprises light-emitting diode warning lights or low-power sensors. A simulated excitation experiment verifies the working state and peak power of the piezoelectric generator unit, which can achieve 23.4 μW peak power. The self-power supply and signal monitoring functions of the intelligent device are verified in experiments conducted for driving light-emitting diode lights and low-power sensors. The device is expected to play a crucial role in the field of intelligent driving and automobile intelligence.
随着能源消耗的增加和环境污染的加剧,关于捕获运输和车辆行驶过程中损失的振动能量的研究正在迅速发展。汽车排气系统中存在大量可回收的振动能量。本文提出了一种使用压电能量发生器的自供电智能装置(SPID)。该SPID包括一个压电发电机和传感器单元,发电机安装在汽车排气系统的末端。发电机采用四个压电发电单元的并联结构,传感单元包括发光二极管警示灯或低功率传感器。模拟激励实验验证了压电发电机单元的工作状态和峰值功率,其峰值功率可达23.4μW。在驱动发光二极管灯和低功率传感器的实验中验证了智能装置的自供电和信号监测功能。该装置有望在智能驾驶和汽车智能化领域发挥关键作用。