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A New Method to Perform Direct Efficiency Measurement and Power Flow Analysis in Vibration Energy Harvesters

机译:一种在振动能量收割机中进行直接效率测量和功率流分析的新方法

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摘要

Measuring the efficiency of piezo energy harvesters (PEHs) according to the definition constitutes a challenging task. The power consumption is often established in a simplified manner, by ignoring the mechanical losses and focusing exclusively on the mechanical power of the PEH. Generally, the input power is calculated from the PEH’s parameters. To improve the procedure, we have designed a method exploiting a measurement system that can directly establish the definition-based efficiency for different vibration amplitudes, frequencies, and resistance loads. Importantly, the parameters of the PEH need not be known. The input power is determined from the vibration source; therefore, the method is suitable for comparing different types of PEHs. The novel system exhibits a combined absolute uncertainty of less than 0.5% and allows quantifying the losses. The approach was tested with two commercially available PEHs, namely, a lead zirconate titanate (PZT) MIDE PPA-1011 and a polyvinylidene fluoride (PVDF) TE LDTM-028K. To facilitate comparison with the proposed efficiency, we calculated and measured the quantity also by using one of the standard options (simplified efficiency). The standard concept yields higher values, especially in PVDFs. The difference arises from the device’s low stiffness, which produces high displacement that is proportional to the losses. Simultaneously, the insufficient stiffness markedly reduces the PEH’s mechanical power. This effect cannot be detected via the standard techniques. We identified the main sources of loss in the damping of the movement by the surrounding air and thermal losses. The latter source is caused by internal and interlayer friction.
机译:根据定义测量压电能量收割机(PEHS)的效率构成了一个具有挑战性的任务。通过忽略机械损失并专注于PEH的机械功率,通常以简化的方式建立功耗。通常,输入功率由PEH的参数计算。为了改进程序,我们设计了一种利用测量系统的方法,该测量系统可以直接建立基于定义的振动幅度,频率和电阻负载。重要的是,PEH的参数不需要知道。输入功率由振动源确定;因此,该方法适用于比较不同类型的PEH。新颖系统表现出较低的绝对不确定度小于0.5%,并允许量化损失。该方法用两种市售的PEHs测试,即锆钛酸铅(PZT)MIDE PPA-1011和聚偏二氟乙烯(PVDF)TE LDTM-028K。为了便于与所提出的效率进行比较,我们计算并通过使用标准选项之一(简化效率)来计算并测量数量。标准概念产生更高的值,特别是在PVDF中。差异出现从设备的低刚度,这产生了与损耗成比例的高位。同时,不足的刚度显着降低了PEH的机械动力。无法通过标准技术检测此效果。我们确定了周围空气和热损失阻尼的损失的主要损失来源。后一来源是由内部和层间摩擦引起的。

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