论文标题
使用动能收割机朝能量阳性传感
Towards Energy Positive Sensing using Kinetic Energy Harvesters
论文作者
论文摘要
用于运动环境检测的常规系统依赖电池来提供采样运动传感器所需的能量。但是,电池的容量有限,一旦耗尽,就必须更换或充电。动能收集(KEH)允许将环境运动和振动转换为可用的电力,并可以无电池,无电的运动传感器操作。来自KEH传感器的信号与基础运动相关,因此可以通过省略加速度计来直接用于上下文检测,节省空间,成本和能量。先前的工作使用开路或电容器电压来传感,而无需使用收获的能量为负载供电。在本文中,我们建议在KEH电路中使用其他传感点,以提供信息丰富的传感信号,而收割机的能量则用于为负载供电。我们系统地分析了不同KEH体系结构中可用的多个感应信号,并在传输模式检测案例研究中进行了比较。为此,我们开发了四个硬件原型,进行了广泛的测量活动,并使用数据训练和评估不同的分类器。我们表明,从传感器感测收到电流信号可能是阳性的,它的功率是信号采集所消耗的十倍,同时为大多数考虑的传输模式提供了可比较的检测准确性与加速度计信号。
Conventional systems for motion context detection rely on batteries to provide the energy required for sampling a motion sensor. Batteries, however, have limited capacity and, once depleted, have to be replaced or recharged. Kinetic Energy Harvesting (KEH) allows to convert ambient motion and vibration into usable electricity and can enable batteryless, maintenance free operation of motion sensors. The signal from a KEH transducer correlates with the underlying motion and may thus directly be used for context detection, saving space, cost and energy by omitting the accelerometer. Previous work uses the open circuit or the capacitor voltage for sensing without using the harvested energy to power a load. In this paper, we propose to use other sensing points in the KEH circuit that offer information rich sensing signals while the energy from the harvester is used to power a load. We systematically analyse multiple sensing signals available in different KEH architectures and compare their performance in a transport mode detection case study. To this end, we develop four hardware prototypes, conduct an extensive measurement campaign and use the data to train and evaluate different classifiers. We show that sensing the harvesting current signal from a transducer can be energy positive, delivering up to ten times as much power as it consumes for signal acquisition, while offering comparable detection accuracy to the accelerometer signal for most of the considered transport modes.