首页> 外文会议>Conference on Active and passive smart structures and integrated systems; 20090309-12; San Diego, CA(US) >Comparisons between Parallel- and Series-SSHI Interfaces Adopted by Piezoelectric Energy Harvesting Systems
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Comparisons between Parallel- and Series-SSHI Interfaces Adopted by Piezoelectric Energy Harvesting Systems

机译:压电能量采集系统采用的并行SSHI和串行SSHI接口的比较

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摘要

Advances in piezoelectric energy harvesting have motivated many research efforts to propose suitable electronic interfaces for power optimization. Two kinds of electronic interfaces are currently used in literature. The common one is the standard interface which includes an AC/DC rectifier followed by a filtering capacitance. Another recently emerged one is the 'synchronized switch harvesting on inductor' (SSHI) which is added to the piezoelectric element together with the standard DC technique. It has been shown that the latter has several advantages over the former; however, the effect of frequency deviation from resonance on the electrical behavior of an SSHI system is not taken into account from the original analysis. We here propose several improved estimates for both Parallel- and Series-SSHI interfaces accounting for this effect, and make comparisons between these two. It shows that both Parallel- and Series-SSHI systems exhibit significant improved bandwidth, while the electrical behavior of the Parallel-SSHI (Series-SSHI) system is similar to that of a strongly coupled electromechanical standard system operated at the short (open) circuit resonance.
机译:压电能量收集技术的进步促使许多研究工作提出了合适的电子接口以进行功率优化。当前在文献中使用两种电子接口。通用接口是标准接口,其中包括一个AC / DC整流器以及一个滤波电容。最近出现的另一个是“电感上的同步开关收集”(SSHI),它与标准的DC技术一起被添加到压电元件中。事实证明,后者比前者具有多个优势。但是,原始分析未考虑共振引起的频率偏差对SSHI系统电气性能的影响。考虑到这种影响,我们在这里为并行SSHI和串行SSHI接口提出了几种改进的估计,并在这两者之间进行了比较。它显示了并行SSHI系统和串联SSHI系统都显示出显着改善的带宽,而并行SSHI(系列SSHI)系统的电性能类似于在短路(开路)电路下工作的强耦合机电标准系统的电性能。谐振。

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