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An Apparatus for the Performance Estimation of Pressure Fluctuation Energy Harvesters

机译:压力波动能量收集器的性能评估装置

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Hydraulic pressure fluctuation energy harvesters are promising alternatives to power up wireless sensor nodes in hydraulic systems. The characterization of these harvesters under dynamic and band-limited pressure signals is imperative for the research and development of novel concepts. To generate and control these signals in a hydraulic medium, a versatile apparatus capable of reproducing pressure signals is proposed. In this paper, a comprehensive discussion of the design considerations for this apparatus and its performance is given. The suggested setup enables the investigation of devices tailored for the harvesting of energy in conventional hydraulic systems. To mimic these systems, static pressures can be tuned up to 300 bar, and the pressure amplitudes with a maximum of 28 Bar at 40 Hz and 0.5 bar at 1000 Hz can be generated. In addition, pressure signals found in commercial hydraulic systems can be reproduced with good accuracy. This apparatus proves to be an accessible, robust, and versatile experimental setup to create environments for the complete performance estimation of pressure fluctuation energy harvesters.
机译:液压波动能量收集器是为液压系统中的无线传感器节点加电的有前途的替代方法。在动态和带限压力信号下表征这些收割机对于研究和开发新概念至关重要。为了在液压介质中产生和控制这些信号,提出了一种能够再现压力信号的通用设备。在本文中,对该设备的设计考虑因素及其性能进行了全面讨论。建议的设置可以研究为常规液压系统中的能量收集量身定制的设备。为了模拟这些系统,可以将静态压力调整到300 bar,并且可以生成最大振幅为40 Hz(28 Hz)和0.5 bar(1000 Hz)的压力幅度。另外,在商用液压系统中发现的压力信号可以被高精度地再现。该设备被证明是一种易于使用,坚固耐用且用途广泛的实验装置,可为压力波动能量收集器的完整性能估算创造环境。

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