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DESIGNING ENERGY HARVESTING SKIN STRUCTURE UTILIZING OUTDOORUNIT VIBRATION

机译:利用室外振动设计能量收集皮肤结构 r nUNIT振动

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This paper presents a new energy harvesting (EH) concept design, referred to as EH skin structure. A generic design and experimental verification methodology will be proposed to demonstrate the feasibility of the EH skin for practical applications. In the past, EH researches have primarily focused on designing a device-level energy harvester, such as a cantilever-type EH device. However, such a device-level energy harvester has several drawbacks: (i) need of an extra space for proof masses and fixture, (ii) significant energy loss due to the fixture, and (iii) need of a casing for EH device protection against environmental harms. While this new EH concept design could overcome the drawbacks above, there is no design methodology for EH skin. This paper proposes design and experimental verification methodology for EH skin structure. The design methodology comprises three tasks: (i) construction of a valid computational model, (ii) design optimization of EH skin, and (iii) experimental verification. An outdoor condensing unit of which a fan produces harmonic vibration is chosen for a case study because similar configuration of vibration can be found in many engineered systems (e.g., airplane wing, AC unit). The proposed design methodology determined an optimal EH skin configuration (sizes, locations, etc.) on the vibrating structure. The EH skin was carefully prototyped to demonstrate that it can generate power up to 3.7mW, which is sustainable for operating wirelessrnsensor units for structural health monitoring or building automation.
机译:本文介绍了一种新的能量收集(EH)概念设计,称为EH皮肤结构。将提出一种通用设计和实验验证方法论,以证明EH皮肤在实际应用中的可行性。过去,EH的研究主要集中在设计设备级别的能量收集器,例如悬臂式EH设备。但是,这种设备级的能量收集器具有几个缺点:(i)需要额外的空间来存放质量块和固定装置,(ii)由于固定装置而造成的大量能量损失,以及(iii)需要用于保护EH设备的外壳防止环境危害。尽管这种新的EH概念设计可以克服上述缺点,但没有用于EH外观的设计方法。本文提出了EH皮肤结构的设计和实验验证方法。设计方法包括三个任务:(i)构建有效的计算模型;(ii)EH皮肤的设计优化;以及(iii)实验验证。在案例研究中选择了一个风扇产生谐波振动的室外冷凝机组,因为在许多工程系统(例如飞机机翼,交流机组)中都可以找到类似的振动配置。拟议的设计方法确定了振动结构上的最佳EH蒙皮配置(尺寸,位置等)。 EH蒙皮经过仔细原型设计,以证明它可以产生高达3.7mW的功率,对于运行无线传感器单元以进行结构健康监测或楼宇自动化,这是可持续的。

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