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A comparison of power output from linear and nonlinear kinetic energy harvesters using real vibration data

机译:使用实际振动数据比较线性和非线性动能收集器的功率输出

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The design of vibration energy harvesters (VEHs) is highly dependent upon the characteristics of the environmental vibrations present in the intended application. VEHs can be linear resonant systems tuned to particular frequencies or nonlinear systems with either bistable operation or a Duffing-type response. This paper provides detailed vibration data from a range of applications, which has been made freely available for download through the Energy Harvesting Network's online data repository. In particular, this research shows that simulation is essential in designing and selecting the most suitable vibration energy harvester for particular applications. This is illustrated through C-based simulations of different types of VEHs, using real vibration data from a diesel ferry engine, a combined heat and power pump, a petrol car engine and a helicopter. The analysis shows that a bistable energy harvester only has a higher output power than a linear or Duffing-type nonlinear energy harvester with the same Q-factor when it is subjected to white noise vibration. The analysis also indicates that piezoelectric transduction mechanisms are more suitable for bistable energy harvesters than electromagnetic transduction. Furthermore, the linear energy harvester has a higher output power compared to the Duffing-type nonlinear energy harvester with the same Q factor in most cases. The Duffing-type nonlinear energy harvester can generate more power than the linear energy harvester only when it is excited at vibrations with multiple peaks and the frequencies of these peaks are within its bandwidth. Through these new observations, this paper illustrates the importance of simulation in the design of energy harvesting systems, with particular emphasis on the need to incorporate real vibration data.
机译:振动能量收集器(VEH)的设计高度依赖于预期应用中存在的环境振动的特性。 VEH可以是调谐到特定频率的线性谐振系统,也可以是具有双稳态操作或Duffing型响应的非线性系统。本文提供了来自各种应用的详细振动数据,这些数据可通过Energy Harvesting Network的在线数据存储库免费下载。特别是,这项研究表明,仿真对于设计和选择最适合特定应用的振动能量收集器至关重要。通过使用基于C的不同类型VEH的仿真,使用来自柴油轮渡发动机,热电联产泵,汽油发动机和直升机的真实振动数据,可以说明这一点。分析表明,双稳态能量采集器在遭受白噪声振动时,其Q值相同的线性功率采集器仅比线性或Duffing型非线性能量采集器具有更高的输出功率。分析还表明,压电转导机制比电磁转导更适合于双稳态能量收集器。此外,与大多数情况下具有相同Q因子的Duffing型非线性能量采集器相比,线性能量采集器具有更高的输出功率。仅当Duffing型非线性能量收集器在具有多个峰值的振动中激发并且这些峰值的频率在其带宽之内时,才能产生比线性能量收集器更大的功率。通过这些新观察,本文说明了仿真在能量采集系统设计中的重要性,特别强调了合并真实振动数据的必要性。

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