首页> 外文会议>2015 9th International Conference on Pervasive Computing Technologies for Healthcare >Inductive power transfer for on-body sensors defining a design space for safe, wirelessly powered on-body health sensors
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Inductive power transfer for on-body sensors defining a design space for safe, wirelessly powered on-body health sensors

机译:人体传感器的感应式功率传输定义了安全,无线供电的人体健康传感器的设计空间

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Designers of on-body health sensing devices face a difficult choice. They must either minimise the power consumption of devices, which in reality means reducing the sensing capabilities, or build devices that require regular battery changes or recharging. Both options limit the effectiveness of devices. Here we investigate an alternative. This paper presents a method of designing safe, wireless, inductive power transfer into on-body sensor products. This approach can produce sensing devices that can be worn for longer durations without the need for human intervention, whilst also having greater sensing and data capture capabilities. The paper addresses significant challenges in achieving this aim, in particular: device safety, sufficient power transfer, and human factors regarding device geometry. We show how to develop a device that meets stringent international safety guidelines for electromagnetic energy on the body and describe a design space that allows designers to make trade-offs that balance power transfer with other constraints, e.g. size and bulk, that affect the wearability of devices. Finally we describe a rapid experimental method to investigate the optimal placement of on-body devices and the actual versus theoretical power transfer for on-body, inductively powered devices.
机译:人体健康感应设备的设计人员面临着一个艰难的选择。他们必须将设备的功耗降至最低,这实际上意味着降低传感能力,或者必须构建需要定期更换电池或充电的设备。两种选择都限制了设备的有效性。在这里,我们研究一种替代方法。本文提出了一种设计安全,无线,感应式能量转移到人体传感器产品中的方法。这种方法可以生产出可以长时间佩戴而无需人工干预的传感设备,同时还具有更好的传感和数据捕获功能。本文针对实现该目标提出了重大挑战,特别是:设备安全性,足够的功率传输以及有关设备几何形状的人为因素。我们将展示如何开发一种符合人体电磁能量的严格国际安全准则的设备,并描述一种设计空间,使设计人员可以权衡取舍,以平衡功率传输与其他约束,例如:尺寸和体积,影响设备的耐磨性。最后,我们描述了一种快速的实验方法,用于研究人体感应设备的最佳放置以及人体感应供电设备的实际功率与理论功率的传递。

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