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Hybrid energy harvesting system under the electromagnetic induced vibrations with non-rigid ground connection

机译:具有非刚性地面连接的电磁诱导振动下的混合能量收集系统

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摘要

A hybrid energy harvesting system has been presented in this study by vibrating a beam element with an electromagnetic actuator. With the structure proposed in this article, two different types of energy harvesting concepts were provided with the piezoelectric patch attached to the fixed end of the cantilever beam and the electromagnetic device connected to the free end of the cantilever beam. Generally, in electromagnetic energy harvesting systems, the electromagnetic device is fixed from one end to the ground. The effects of vibration of this fixed surface on energy harvest are being neglected. Electromagnetic devices that provide energy harvesting and vibrate the beam element are of identical structure in the proposed hybrid system. Both devices are mounted at the same point of the beam to face each other. While one of these electromagnetic devices is fixed onto the ground, the other one is assembled to the main beam with a secondary parallel beam element. Therefore, the electromagnetic device that harvests energy or vibrates the beam element can be changed so that it can be either on the lower or upper side of the main beam element. With this designed structure, the behavior of electromagnetic energy harvesting elements and vibration actuators placed on the non-rigid ground has been investigated. Unlike conventional energy harvesting methods, the concept of displacement transmissibility has been discussed in this study. Experimental studies have performed the dynamic conditions to obtain optimum energy harvest in the proposed harvesting system for different frequency inputs. Experimental results revealed the effect of vibrations originating from the non-rigid ground on energy harvesting. It has been observed that the electromagnetic energy harvesting device connected to the non-rigid ground increases the amount of energy collected.
机译:通过用电磁致动器振动梁元件,在该研究中介绍了混合能量收集系统。利用本文中提出的结构,提供了两种不同类型的能量收集概念,其中附接到悬臂梁的固定端的压电贴片和连接到悬臂梁的自由端的电磁装置。通常,在电磁能量收集系统中,电磁装置从一端固定到地。忽略了这种固定表面对能量收获的振动的影响。提供能量收集和振动光束元件的电磁器件在所提出的混合系统中具有相同的结构。两个装置安装在光束的相同点以彼此面对。虽然这些电磁装置中的一个固定在地上,但是另一个将其组装到具有次级平行梁元件的主光束。因此,可以改变收获能量或振动梁元件的电磁装置,使得它可以是主梁元件的下侧或上侧。利用这种设计的结构,研究了电磁能量收集元件和放置在非刚性地上的振动致动器的行为。与传统的能量收集方法不同,本研究讨论了位移传导性的概念。实验研究已经进行了动态条件,以获得用于不同频率输入的提出的收集系统中的最佳能量收获。实验结果揭示了源自非刚性地面对能量收集的振动的影响。已经观察到连接到非刚性地的电磁能量收集装置增加收集的能量。

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