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POWER DENSITY PERFORMANCE IMPROVEMENTS FOR HIGH PRESSURE RIPPLE ENERGY HARVESTING

机译:高压波纹能量收集的功率密度性能改进

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A hydraulic pressure energy harvester (HPEH) device, which utilizes a housing to isolate a piezoelectric stack from the hydraulic fluid via a mechanical interface, generates power by converting the dynamic pressure within the system into electricity. Prior work developed an HPEH device capable of generating 2187 micro Watts from an 85 kPa pressure ripple amplitude using a 1387 mm~3 stack. A new generation of HPEH produced 157 micro Watts at the test conditions of 18 MPa static pressure and 394 kPa root-mean-square pressure amplitude using a 50 mm~3 stack, thus increasing the power produced per volume of piezoelectric stack principally due to the higher dynamic pressure input. The stack and housing design implemented on this new prototype device yield a compact, high-pressure hydraulic pressure energy harvester designed to withstand 35 MPa. The device, which is less than a 2.54 cm in length as compared to a 5.3 cm length of a previous HPEH, was statically tested up to 21.9 MPa and dynamically tested up to 19 MPa with 400 kPa root-mean-square dynamic pressure amplitude. An inductor was included in the load circuit in parallel with the stack and the load resistance to increase the power output of the device. A previously developed electromechanical power output model for this device that predicts the power output given the dynamic pressure ripple amplitude is compared to the power results. The power extracted from this device would be sufficient to meet the proposed applications of the device, which is to power sensor nodes in hydraulic systems.
机译:液压能量收集器(HPEH)设备利用外壳通过机械接口将压电堆与液压流体隔离,通过将系统内的动态压力转换为电能来产生动力。先前的工作开发了一种HPEH设备,该设备可以使用1387 mm〜3的堆栈从85 kPa的压力脉动幅度产生2187微瓦。新一代HPEH使用50 mm〜3的电池组在18 MPa静压和394 kPa均方根压力幅值的测试条件下产生了157微瓦的功率,这主要是由于压电材料的体积增加所产生的功率。更高的动态压力输入。在这种新的原型设备上实施的堆栈和外壳设计产生了紧凑的高压液压能量采集器,设计可承受35 MPa的压力。与以前的HPEH的5.3 cm长度相比,该设备的长度小于2.54 cm,在400 kPa均方根动压振幅下,静态测试了高达21.9 MPa的压力并动态测试了高达19 MPa的压力。负载电路中与堆叠和负载电阻并联的是一个电感器,以增加器件的功率输出。将该设备先前开发的机电功率输出模型与功率结果进行比较,该模型在给定动态压力纹波幅度的情况下预测功率输出。从该设备提取的功率足以满足该设备的建议应用,即为液压系统中的传感器节点供电。

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