Li Chenchen, Yang Fan, Liu Pengfei, Fu Chaoliang, Liu Quan, Zhao Hongduo, Lin Peng
The Key Laboratory of Road and Traffic Engineering, Ministry of Education, Tongji University, Shanghai 201804, China.
Institute of Highway Engineering (ISAC), RWTH Aachen University, 52074 Aachen, Germany.
Sensors (Basel). 2021 Nov 19;21(22):7708. doi: 10.3390/s21227708.
To improve the energy harvesting efficiency of the piezoelectric device, a stack units-based structure was developed and verified. Factors such as stress distribution, load resistance, loads, and loading times influencing the piezoelectric properties were investigated using theoretical analysis and experimental tests. The results show that the unit number has a negative relationship with the generated energy and the stress distribution has no influence on the power generation of the piezoelectric unit array. However, with a small stress difference, units in a parallel connection can obtain high energy conversion efficiency. Additionally, loaded with the matched impedance of 275.0 kΩ at 10.0 kN and 10.0 Hz, the proposed device reached a maximum output power of 84.3 mW, which is enough to supply the low-power sensors. Moreover, the indoor load test illustrates that the electrical performance of the piezoelectric device was positively correlated with the simulated loads when loaded with matched resistance. Furthermore, the electrical property remained stable after the fatigue test of 100,000 cyclic loads. Subsequently, the field study confirmed that the developed piezoelectric device had novel piezoelectric properties with an open-circuit voltage of 190 V under an actual tire load, and the traffic parameters can be extracted from the voltage waveform.
为提高压电器件的能量收集效率,开发并验证了一种基于堆叠单元的结构。利用理论分析和实验测试研究了应力分布、负载电阻、负载及加载次数等影响压电性能的因素。结果表明,单元数量与产生的能量呈负相关,应力分布对压电单元阵列的发电无影响。然而,在应力差较小时,并联的单元可获得较高的能量转换效率。此外,在10.0 kN和10.0 Hz下加载275.0 kΩ的匹配阻抗时,所提出的器件达到了84.3 mW的最大输出功率,足以供应低功率传感器。而且,室内负载测试表明,当加载匹配电阻时,压电器件的电性能与模拟负载呈正相关。此外,经过100,000次循环负载的疲劳测试后,电性能保持稳定。随后,现场研究证实,所开发的压电器件具有新颖的压电性能,在实际轮胎负载下开路电压为190 V,并且可以从电压波形中提取交通参数。