We propose SmartON, a batteryless system that learns to wake up proactively at the right moment in order to detect events of interest. It does so by adapting the duty cycle to match the distribution of event arrival times under the constraints of harvested energy. While existing energy harvesting systems either wake up periodically at a fixed rate to sense and process the data, or wake up only in accordance with the availability of the energy source, SmartON employs a three-phase learning framework to learn the energy harvesting pattern as well as the pattern of events at run-time, and uses that knowledge to wake itself up when events are most likely to occur. The three-phase learning framework enables rapid adaptation to environmental changes in both short and long terms. Being able to remain asleep more often than a CTID (charging-then-immediate-discharging) wake-up system and adapt to the event pattern, SmartON is able to reduce energy waste, increase energy efficiency, and capture more events. To realize SmartON we have developed a dedicated hardware platform whose power management module activates capacitors on-the-fly to dynamically increase its storage capacitance. We conduct both simulation-driven and real-system experiments to demonstrate that SmartON captures 1X--7X more events and is 8X--17X more energy-efficient than a CTID system.
翻译:我们提议SmartON系统,这是一个在正确的时机学会在正确的时机积极主动地觉醒以便发现感兴趣的事件,通过调整责任周期来适应在收获能源的限制下事件抵达时间的分配,我们建议SmartON系统(SmartON)采用一个三阶段学习框架,以了解能源收获模式和运行时事件的模式,并利用这种知识在最有可能发生事件时唤醒自己。三阶段学习框架使得能够快速适应短期和长期的环境变化。能够保持睡眠的频率超过CTID(定位-即时干扰)觉醒系统和适应事件模式,SmartON能够减少能源浪费、提高能源效率和捕捉更多事件。为了实现SmartON,我们开发了一个专用硬件平台,其电源管理模块在天上启动电容器,以动态地增强存储能力。我们进行了比智能X-X(Smary-X)系统更能驱动和真实的AX(Smary-X)系统实验,以展示比智能X(Smary-X-X)系统更能驱动和8X(Sir-X)更真实的能源实验。