Graduate Institute of Vehicle Engineering, National Changhua University of Education, Changhua City, Taiwan.
PLoS One. 2024 Sep 6;19(9):e0307762. doi: 10.1371/journal.pone.0307762. eCollection 2024.
This study investigates the performance of dynamic capacitance regulation technology in electric vehicle piezoelectric shock absorbers for energy recovery under varying road conditions. By simulating a quarter-vehicle suspension system, this paper comprehensively analyzes the energy recovery efficiency of piezoelectric shock absorbers on gravel, speed bumps, and bumpy road conditions, comparing the performance differences between traditional fixed capacitance and dynamic capacitance. The results demonstrate that dynamic capacitance regulation technology can automatically adjust the capacitance value in response to instantaneous voltage changes, thereby enhancing energy recovery efficiency under various road conditions. This technology not only improves the energy conversion efficiency of piezoelectric shock absorbers but also strengthens the system's adaptability to different vibration frequencies and amplitudes. Further simulation evidence confirms that piezoelectric shock absorbers, under dynamic capacitance regulation, achieve better energy recovery performance across diverse road conditions, offering new insights into improving the energy efficiency and sustainability of electric vehicles. The novelty of this research lies in the first application of dynamic capacitance regulation technology to the energy recovery system of electric vehicle piezoelectric shock absorbers, providing a new theoretical foundation and technical reference for optimizing electric vehicle energy recovery systems.
本研究探讨了在不同道路条件下,电动汽车压电式减震器中动态电容调节技术在能量回收方面的性能。通过模拟四分之一车辆悬架系统,本文全面分析了在砾石、减速带和颠簸路面条件下压电式减震器的能量回收效率,比较了传统固定电容和动态电容的性能差异。结果表明,动态电容调节技术可以根据瞬时电压变化自动调整电容值,从而提高各种道路条件下的能量回收效率。该技术不仅提高了压电式减震器的能量转换效率,还增强了系统对不同振动频率和幅度的适应性。进一步的仿真证据证实,在动态电容调节下,压电式减震器在各种道路条件下实现了更好的能量回收性能,为提高电动汽车的能量效率和可持续性提供了新的见解。本研究的新颖之处在于首次将动态电容调节技术应用于电动汽车压电式减震器的能量回收系统,为优化电动汽车能量回收系统提供了新的理论基础和技术参考。