Chair of Measurement and Control Systems, Center of Energy Technology (ZET), Universität Bayreuth, Universitätsstraße 30, D-95447 Bayreuth, Germany.
Hahn-Schickard, Wilhelm-Schickard-Str.10, D-78052 Villingen-Schwenningen, Germany.
Sensors (Basel). 2020 Apr 29;20(9):2519. doi: 10.3390/s20092519.
Self-adaptive vibration energy harvesters convert the kinetic energy from vibration sources into electrical energy and continuously adapt their resonance frequency to the vibration frequency. Only when the two frequencies match can the system harvest energy efficiently. The harvesting of vibration sources with a time-variant frequency therefore requires self-adaptive vibration harvesting systems without human intervention. This work presents a self-adaptive energy harvesting system that works completely self-sufficiently. Using magnetic forces, the axial load on a bending beam is changed and thus the resonance frequency is set. The system achieves a relative tuning range of 23% at a center frequency of 36.4 Hz. Within this range, the resonance frequency of the harvester can be set continuously and precisely. With a novel optimized method for frequency measurement and with customized electronics, the system only needs 22 µW to monitor the external vibration frequency and is therefore also suitable for environments with low vibration amplitudes. The system was verified on a vibrational test bench and can easily be tailored to a specific vibration source.
自适应振动能量收集器将振动源的动能转换为电能,并不断将其共振频率适配到振动频率。只有当两个频率匹配时,系统才能有效地收集能量。因此,对于具有时变频率的振动源,需要无需人工干预的自适应振动采集系统。这项工作提出了一种完全自给自足的自适应能量采集系统。该系统使用磁力改变弯曲梁的轴向负载,从而设置共振频率。该系统在中心频率为 36.4Hz 时实现了 23%的相对调谐范围。在此范围内,可连续且精确地设置收集器的共振频率。通过一种新颖的优化频率测量方法和定制的电子设备,该系统仅需 22µW 即可监测外部振动频率,因此也适用于振动幅度较低的环境。该系统已在振动测试台上进行了验证,并且可以轻松针对特定的振动源进行定制。