使用铅-镧-锆-钛酸盐(7/60/40 PLZT)热释电电池收集热释电能量

Mounir Amokrane, Arnaud Baysse, B. Nogarede, M. Rguiti
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引用次数: 3

摘要

这项工作的目的是研究使用铅-镧-锆-钛酸盐(7/60/40 PLZT)热释电电池收集能量的能力。为此,有源元件受到温度变化的影响。热释电电池直接连接到负载上,以实现能量收集的电阻循环。本文对热释电元件温度随时间变化的输出功率和电压进行了分析计算。理论结果表明,输出电压和功率随负载值、温度变化幅度和频率的变化而变化。此外,根据变化频率观察到一个匹配的负荷值。这个匹配的负载提供最大输出功率。实验研究表明,在50 mHz和100 mHz频率下,负载上的最大电压值分别为7.25 V至11 V。结果表明,电压随频率的增加而增加。负载功率也有相同的变化,匹配负载(26.9 MΩ)的频率从0.64 μ W变化到1.65 μ W。这项研究证明了使用直径20毫米的热电池收集能量的可行性,并且负载电压值与传感器的电源水平兼容。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Pyroelectric power harvesting using a lead-lanthanum-zirconate-titanate (7/60/40 PLZT) pyroelectric cell
The aim of this work is to study the ability of harvesting energy using a lead-lanthanum-zirconate-titanate (7/60/40 PLZT) pyroelectric cell. For this purpose, the active element is subjected to temperature variations. The pyroelectric cell is directly connected to a load to realize a resistive cycle of energy harvesting. In this work, an analytical calculation of the electrical output power and voltage obtained for a time variation of the pyroelectric element temperature is done. The theoretical results show a dependence of the output voltage and power according to the load value, temperature amplitude and frequency of variation. Moreover a matched value of load is observed according to the frequency of variation. This matched load gives a maximum output power. The experimental study shows maximum voltage values on the load ranging form 7.25 V to 11 V for frequencies of 50 and 100 mHz, respectively. This results show an increase of voltage according to the frequency increase. The same evolution is observed for the load power, it evolves from 0.64 to 1.65 μ W according to frequency for the matched load (26.9 MΩ). This study demonstrated the feasibility of harvesting energy using a 20 mm diameter pyro-cell and that for values of load voltage compatible with a power supply level of sensors.
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