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Modelling, Simulation and Analysis of a Self-healing Energy Harvester

机译:自愈式能量采集器的建模,仿真和分析

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摘要

The ability to harvest energy from the environment in order to provide a source of power for devices that are inaccessible and cannot rely solely on batteries is becoming an important characteristic for many sensor and health monitoring applications. Energy harvesters come in many forms, a common approach of which is to utilise environmental vibrations to generate power through the actions of the piezoelectric effect. The power generated from such devices is highly dependent upon the coupling both to the mechanical source and the electrical load of the system. Unfortunately damage to such energy harvesting devices can lead to a loss of coupling in both mechanical and electrical systems. This paper investigates an approach to ‘self-heal’ the response of an energy harvesting system once damage has occurred through the use of an anti-fuse array of ‘passive’ components to effectively re-couple the electrical load to match more efficiently and regain some loss of power generation after damage. This is first demonstrated through modelling and simulation within two state-of-the-art applications, SPICE and COMSOL and then later built into a real-world demonstrator.
机译:从环境中收集能量,以便为无法访问且不能仅依靠电池的设备提供电源的能力,已成为许多传感器和健康监控应用程序的重要特征。能量收集器有多种形式,一种常见的方法是利用环境振动通过压电效应来发电。从这样的设备产生的功率高度依赖于与系统的机械源和电负载的耦合。不幸的是,这种能量收集装置的损坏会导致机械和电气系统的耦合损失。本文研究了一种通过使用“无源”组件的反熔丝阵列有效地重新耦合电负载以更有效地进行匹配和恢复的方法,从而在损坏发生后“自我修复”能量收集系统的响应。损坏后发电会有些损失。首先通过在两个最先进的应用程序SPICE和COMSOL中进行建模和仿真来证明这一点,然后将其内置到一个实际的演示器中。

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