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Energy-autonomous On-rotor RPM Sensor Using Variable Reluctance Energy Harvesting

机译:可变磁阻能量收集的能量自转转子RPM传感器

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Energy-autonomous wireless sensor systems have the potential to enable condition monitoring without the need for a wired electrical infrastructure or capacity-limited batteries. In this paper, a robust and low-cost energy-autonomous wireless rotational speed sensor is presented, which harvests energy from the rotary motion of its host using the variable reluctance principle. A microelectromechanical system (MEMS) gyroscope is utilized for angular velocity measurements, and a Bluetooth Low Energy System-on-Chip (SoC) transmits the acquired samples wirelessly. An analysis on the individual subsystems is performed, investigating the output of the energy transducer, the required energy by the load, and energy losses in the whole system. The results of simulations and experimental measurements on a prototype implementation show that the system achieves energy-autonomous operation with sample rates between 1 to 50 Hz already at 10 to 40 rotations per minute. Detailed investigations of the system modules identify the power management having the largest potential for further improvements.
机译:节能型无线传感器系统具有实现状态监测的潜力,而无需有线电气基础设施或容量受限的电池。在本文中,提出了一种耐用且低成本的能量自主的无线转速传感器,该传感器使用可变磁阻原理从其主机的旋转运动中收集能量。微机电系统(MEMS)陀螺仪用于角速度测量,蓝牙低功耗片上系统(SoC)无线传输采集的样本。对各个子系统进行分析,调查能量传感器的输出,负载所需的能量以及整个系统的能量损失。在原型实现上的仿真和实验测量结果表明,该系统以每分钟10至40转的速度在1至50 Hz之间进行采样,从而实现了能量自给自足的操作。对系统模块的详细研究表明,电源管理具有进一步改进的最大潜力。

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