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Spring amplification and dynamic friction modelling of a 2DOF/2SDOF system in an electromagnetic vibration energy harvester - Experiment, simulation, and analytical analysis

机译:电磁振动能量采集器中2DOF / 2SDOF系统的弹簧放大和动摩擦建模-实验,仿真和分析分析

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A cantilever beam-based vibration energy harvester is generally preferred due to its simplicity and effectiveness as compared to a spring mass system. This paper analyses the use of a spring to amplify the performance of a conventional single degree of freedom (SDOF) cantilever beam-based vibration energy harvester. A spring was introduced to modify the conventional SDOF design into a two single degree of freedom (2SDOF) system and a two degree of freedom (2DOF) system. The motion of the spring was restricted in the vertical motion using a slider and a linear guide rail fixed to the vibrating base, hence introducing a dynamic friction into the system. Both designs were analysed under three different cases to observe the effect of natural frequency reduction on the frequency bandwidth and power harvested by each design. The vibration-friction interaction in the designs was modelled based on the concept of relative motion. Two different friction theories were applied and verified with simulation and experiment. It was shown that the stick condition would not occur in a SDOF system with a dynamic friction interaction. It was also found that it is possible to tune the friction force of a dynamic friction surface to induce a favourable output at the isolation frequencies of a 2DOF system. Analysis shows that the 2DOF design displayed a larger power density than the conventional SDOF design below a certain natural frequency value, being 78.1% higher at 9.5 Hz. The power densities of the 2SDOF design were almost similar to the SDOF design. However, the 2SDOF design displayed a significant drop in power when under the condition of matched natural frequencies. Nevertheless, the frequency bandwidth of the 2SDOF design can be improved by tuning its two resonant peaks closer to each other.
机译:基于悬臂梁的振动能量收集器通常是优选的,因为与弹簧质量系统相比,其简单性和有效性。本文分析了使用弹簧来增强传统单自由度(SDOF)悬臂梁式振动能量采集器的性能。引入了一种弹簧,以将传统的SDOF设计修改为两个单自由度(2SDOF)系统和两个自由度(2DOF)系统。使用滑块和固定在振动基座上的线性导轨将弹簧的运动限制在垂直运动中,从而将动态摩擦力引入系统中。在三种不同情况下对两种设计进行了分析,以观察自然频率降低对每种设计所获得的频率带宽和功率的影响。设计中的振动-摩擦相互作用是基于相对运动的概念建模的。应用了两种不同的摩擦理论,并通过仿真和实验进行了验证。结果表明,在具有动态摩擦相互作用的SDOF系统中,不会发生粘着状态。还发现,有可能调整动态摩擦表面的摩擦力,以在2DOF系统的隔离频率下产生良好的输出。分析表明,在一定的固有频率值下,2DOF设计显示出比常规SDOF设计更大的功率密度,在9.5 Hz时,功率密度提高了78.1%。 2SDOF设计的功率密度几乎与SDOF设计相似。但是,2SDOF设计在匹配的固有频率条件下显示出明显的功耗下降。尽管如此,通过调整两个彼此接近的共振峰可以改善2SDOF设计的频率带宽。

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