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Reconfigurable System for Electromagnetic Energy Harvesting With Inherent Activity Sensing Capabilities for Wearable Technology

机译:具有可穿戴技术固有活动感测能力的可重构电磁能量收集系统

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This brief presents a power management system for wearable technology based on a custom made electromagnetic (EM) transducer and a front-end circuit for energy harvesting (EH) and activity sensing. Due to the ac-output nature of the EM transducer, this brief proposes a reconfigurable rectifier that can switch from passive operation to a more power-efficient active topology depending on the available power in the system. The passive mode operates as a negative voltage converter during start-up, while the active configuration is enabled and driven by a control block after the available voltage at an output storage capacitor surpasses 1.8 V. This brief also introduces an activity detection circuit that enables the use of the inherent sensing capabilities of the EM transducer. The combination of both, a reconfigurable rectifier and an activity detection circuit, allows the system to gather information similar to that of an accelerometer regarding the activity of the user, but at net-zero power consumption and lower cost. The EH front-end described in this brief was implemented in a 130 nm CMOS process with an area of 0.0254 mm(2). Measurements show that the circuit has a peak power conversion efficiency of 92.04%, while the power management system can extend the battery's charge of a Fitbit Charge HR by four hours for every 30 effective minutes of a sprint interval training routine.
机译:本简介介绍了一种基于定制电磁(EM)换能器以及用于能量收集(EH)和活动感测的前端电路的可穿戴技术电源管理系统。由于EM传感器具有交流输出特性,因此本摘要提出了一种可重新配置的整流器,该整流器可以根据系统中的可用功率从无源操作切换到更省电的有源拓扑。被动模式在启动期间用作负电压转换器,而主动配置在输出存储电容器上的可用电压超过1.8 V之后启用并由控制块驱动。本简介还介绍了一种活动检测电路,该电路使能EM传感器固有的感应功能的使用。可重新配置的整流器和活动检测电路两者的结合,使系统可以收集类似于加速度计的有关用户活动的信息,但功耗为零,且成本较低。本简介中描述的EH前端采用130 nm CMOS工艺实现,面积为0.0254 mm(2)。测量表明,该电路的峰值功率转换效率为92.04%,而电源管理系统可以在sprint间隔训练例程中每30分钟有效地将Fitbit Charge HR的电池充电时间延长四个小时。

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