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Design and implementation of a new contactless triple piezoelectrics wind energy harvester

机译:新型非接触式三压电风能采集器的设计与实现

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The features of the new designed and constructed harvester are examined. The harvested power of three piezoelectric layers having different masses (i.e. different natural frequencies) has been explored. These layers have the same length around the harvester body, whereas a permanent magnet (PM) attached to the shaft rotates by low speed wind and this PM repels these three piezoelectric layers with a 120 phase shift. Since PM and the PMs located to the tip of the layers do not contact, this system improves the lifetime of the harvester. The measured harvested power in the low wind speeds (i.e. 1.75 m/s) is of the order of 0.2 mu W. The waveform includes many subharmonic and superharmonic components, hence the total harmonic distortion (THD) is found around 130%, which is fairly high due to nonlinear effects. Although the system shows an high THD, the 20% of the signal can be rectified and stored in the capacitor for the use of harvested energy. A scenario has also been created for a resistive load of R-L, =1 M Omega and 100 k Omega for various wind speeds and it has been proven that the harvester can feed the load at even lower wind speeds. In addition, extra power beyond the usage of the load can be stored into the capacitor. The proposed harvester and its rectifying unit can be a good solution for the energy conversion procedures of low-power required machines. (C) 2017 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:检查了新设计和构造的收割机的功能。已经研究了具有不同质量(即,不同固有频率)的三个压电层的收集功率。这些层在收割机主体周围的长度相同,而连接到轴的永磁体(PM)则通过低速风旋转,并且该PM以120个相移排斥这三个压电层。由于PM和位于层末端的PM不接触,因此该系统可以延长收割机的使用寿命。在低风速(即1.75 m / s)下测得的收获功率约为0.2μW。该波形包括许多次谐波和超谐波分量,因此总谐波失真(THD)约为130%,即由于非线性效应而相当高。尽管系统显示出较高的THD,但仍可将20%的信号整流并存储在电容器中,以利用所收集的能量。还针对不同的风速创建了R-L,= 1 M Omega和100 k Omega的电阻负载的场景,并且已经证明收割机可以以更低的风速提供负载。另外,可以将超出负载使用范围的额外功率存储到电容器中。拟议的收割机及其精馏单元可以成为低功率所需机器的能量转换程序的良好解决方案。 (C)2017氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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