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首页> 外文期刊>Smart Materials & Structures >A new energy-harvesting device system for wireless sensors, adaptable to on-site monitoring of MR damper motion
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A new energy-harvesting device system for wireless sensors, adaptable to on-site monitoring of MR damper motion

机译:一种用于无线传感器的新型能量收集设备系统,适用于MR阻尼器运动的现场监控

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摘要

Under extreme service conditions in vehicle suspension systems, some defects exist in the hardening, bodying, and poor temperature stability of magnetorheological (MR) fluid. These defects can cause weak and even invalid performance in the MR fluid damper (MR damper for short). To ensure the effective validity of the practical applicability of the MR damper, one must implement an online state-monitoring sensor to monitor several performance factors, such as acceleration. In this empirical work, we propose a new energy-harvesting device system for the wireless sensor system of an MR damper. The monitoring sensor system consists of several components, such as an energy-harvesting device, energy-management circuit, and wireless sensor node. The electrical energy harvested from the kinetic energy of the MR fluid that flows within the MR damper can be automatically charged and discharged with the help of an energy-management circuit for the wireless sensor node. After verifying good performance from each component, an experimental apparatus is built to evaluate the feasibility of the proposed self-powered wireless sensor system. The measured results of pressure, temperature, and acceleration data within the MR damper clearly demonstrate the practical applicability of monitoring the operating work states of the MR damper when it is subjected to sinusoidal excitation.
机译:在车辆悬架系统的极端使用条件下,磁流变(MR)流体的硬化,粘固和较差的温度稳定性存在一些缺陷。这些缺陷可能会导致MR流体阻尼器(简称MR阻尼器)的性能下降,甚至失效。为了确保MR阻尼器实际适用性的有效有效性,必须安装一个在线状态监视传感器来监视多个性能因素,例如加速度。在这项经验工作中,我们为MR阻尼器的无线传感器系统提出了一种新的能量收集设备系统。监视传感器系统由几个组件组成,例如能量收集设备,能量管理电路和无线传感器节点。通过在MR阻尼器中流动的MR流体的动能收集的电能可以在无线传感器节点的能量管理电路的帮助下自动充电和放电。在验证了每个组件的良好性能之后,建立了一个实验装置来评估所提出的自供电无线传感器系统的可行性。 MR阻尼器内压力,温度和加速度数据的测量结果清楚地表明了在正弦激励下监测MR阻尼器的工作状态的实际适用性。

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