Electromechanical-Traffic Model of Compression-Based Piezoelectric Energy Harvesting System

S. Gareh, B. C. Kok, H. Goh
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引用次数: 10

Abstract

Piezoelectric energy harvesting has advantages over other alternative sources due to its large power density, ease of applications, and capability to be fabricated at different scales: macro, micro, and nano. This paper presents an electromechanical-traffic model for roadway compression-based piezoelectric energy harvesting system. A two-degree-of-freedom (2-DOF) electromechanical model has been developed for the piezoelectric energy harvesting unit to define its performance in power generation under a number of external excitations on road surface. Lead Zirconate Titanate (PZT-5H) is selected as the piezoelectric material to be used in this paper due to its high Piezoelectric Charge Constant (d) and Piezoelectric Voltage Constant (g) values. The main source of vibration energy that has been considered in this paper is the moving vehicle on the road. The effect of various frequencies on possible generated power caused by different vibration characteristics of moving vehicle has been studied. A single unit of circle-shape Piezoelectric Cymbal Transducer (PCT) with diameter of 32 mm and thickness of 0.3 mm be able to generate about 0.12 mW and 13 mW of electric power under 4 Hz and 20 Hz of excitation, respectively. The estimated power to be generated for multiple arrays of PCT is approximately 150 kW/ km. Thus, the developed electromechanical-traffic model has enormous potential to be used in estimating the macro scale of roadway power generation system.
基于压缩的压电能量收集系统机电流量模型
压电能量收集由于其大的功率密度,易于应用,并且能够在不同的尺度上制造:宏观,微观和纳米,因此与其他替代能源相比具有优势。提出了基于巷道压缩的压电能量收集系统的机电交通模型。建立了压电能量收集装置的二自由度机电模型,以确定其在多种路面外部激励下的发电性能。本文选择锆钛酸铅(PZT-5H)作为压电材料,因为其压电电荷常数(d)和压电电压常数(g)值较高。本文所考虑的振动能量的主要来源是道路上行驶的车辆。研究了不同频率对运动车辆不同振动特性可能产生的功率的影响。单个直径为32 mm、厚度为0.3 mm的圆形压电钹换能器(PCT)在4 Hz和20 Hz激励下分别能产生约0.12 mW和13 mW的电力。多个PCT阵列产生的估计功率约为150千瓦/公里。因此,所建立的机电交通模型在估算道路发电系统宏观规模方面具有巨大的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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