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Concurrent Task Scheduling and Dynamic Voltage and Frequency Scaling in a Real-Time Embedded System With Energy Harvesting

机译:具有能量收集的实时嵌入式系统中的并发任务调度和动态电压和频率缩放

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Energy harvesting is a promising technique to overcome the limit on energy availability and increase the lifespan of battery-powered embedded systems. In this paper, the question of how one can achieve the prolonged lifespan1 of a real-time embedded system with energy harvesting capability (RTES-EH) is investigated. The RTES-EH comprises a photovoltaic (PV) panel for energy harvesting, a supercapacitor for energy storage, and a real-time sensor node as the embedded load device. A global controller performs simultaneous optimal operating point tracking for the PV panel, state-of-charge (SoC) management for the supercapacitor, and energy-harvesting-aware real-time task scheduling with dynamic voltage and frequency scaling (DVFS) for the sensor node, while employing a precise solar irradiance prediction method. The controller employs a cascaded feedback control structure, where an outer supervisory control loop performs real-time task scheduling with DVFS in the sensor node while maintaining the optimal supercapacitor SoC for improved system availability, and an inner control loop tracks the optimal operating point of the PV panel on the fly. Experimental results show that the proposed global controller lowers the task instance drop rate by up to 63% compared with the baseline controller within the same service time (i.e., from sunrise to sunset).
机译:能量收集是一种有前途的技术,可以克服能量可用性的限制并增加电池供电嵌入式系统的使用寿命。本文研究了如何才能实现具有能量采集功能的实时嵌入式系统(RTES-EH)的使用寿命延长的问题。 RTES-EH包括用于能量收集的光伏(PV)面板,用于能量存储的超级电容器,以及作为嵌入式负载设备的实时传感器节点。全局控制器可同时执行用于光伏面板的最佳工作点跟踪,用于超级电容器的荷电状态(SoC)管理以及具有传感器动态能量和频率缩放(DVFS)功能的能量采集感知实时任务调度节点,同时采用精确的太阳辐照度预测方法。控制器采用级联反馈控制结构,其中外部监控控制环路通过传感器节点中的DVFS执行实时任务调度,同时保持最佳的超级电容器SoC以提高系统可用性,而内部控制环路则跟踪传感器的最佳工作点。光伏面板在飞。实验结果表明,与基线控制器相比,在相同服务时间内(即从日出到日落),所建议的全局控制器将任务实例的丢弃率降低了63%。

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