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Synergy of Wind Energy Harvesting and Synchronized Switch Harvesting Interface Circuit

机译:风能采集与同步开关采集接口电路的协同作用

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Due to the complex aero-electro-mechanical coupling involved in wind energy harvesting systems, power enhancing efforts in the literature are mostly devoted to structural modifications while the interface circuit is simplified to a resistive ac load. Yet the ac outputs are not applicable for practical usage. In this paper, we study the dynamics and dc power generation of galloping energy harvester. In particular, the enhancement of wind power extraction using the synchronized switching harvesting on inductor (SSHI) power conditioning circuit is emphasized. Analytical solution of the steady-state mechanical and electrical responses with the SSHI interface is derived explicitly and validated with wind tunnel experiment and circuit simulation. The performance of SSHI interface is compared to that of a standard bridge rectifier interface circuit. It shows that the SSHI interface achieves tremendous power enhancement in a weak-coupling system, and higher wind speeds render more significant power enhancement. Moreover, given the same wind condition and output power requirement, a system connected to the SSHI uses much less piezoelectric material compared to that connected to the standard circuit. With a weak-coupling harvester operating at a wind speed of 7 m/s, the SSHI can harvest up to 143% more wind power than the standard circuit.
机译:由于风能收集系统涉及复杂的航空电子机械耦合,因此文献中的功率增强工作主要用于结构修改,而接口电路则简化为电阻性交流负载。但是交流输出不适用于实际用途。在本文中,我们研究了疾驰能量收集器的动力学和直流发电。特别地,强调了使用感应器上的同步开关收获(SSHI)功率调节电路来增强风能提取。明确导出了具有SSHI接口的稳态机械和电气响应的解析解,并通过风洞实验和电路仿真对其进行了验证。将SSHI接口的性能与标准桥式整流器接口电路的性能进行了比较。它表明,SSHI接口在弱耦合系统中实现了巨大的功率增强,并且更高的风速带来了更大的功率增强。此外,在相同的风况和输出功率要求的情况下,与连接至SSHI的系统相比,与连接至标准电路的系统相比,使用的压电材料要少得多。通过以7 m / s的风速运行的弱耦合采集器,SSHI可以比标准电路多采集多达143%的风能。

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