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Enabling Ultra-Low Power Operation in High-End Wireless Sensor Networks Nodes

机译:在高端无线传感器网络节点中启用超低功耗操作

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This paper presents a prototype hardware/software architecture for minimizing energy consumption on high-end microcontrollers, while simplifying the development of applications providing a general-purpose-like programming environment. The key features enabling this twofold goal are operating system support to processes, optimized sensing and hibernation of the system state. To balance performance offered by high-end microcontrollers with the need for ultra-low power operation-especially required by WSNs-it is essential to minimize the duty cycle by keeping the microcontroller in a low-power state as long as possible, without affecting the performance required by the application. To cope with the increasing leakage current observed in today's microcontrollers a software-based hibernation mechanism has been implemented to transparently save the memory of processes in a non-volatile memory, allowing to completely switch off the microcontroller. To further avoid costly process loading overheads during the sleeping periods, we devised a smart sensing mechanism capable of gathering data from peripherals without restoring the state of processes. Preliminary results show that the lifetime of the proposed node architecture is of the same order of magnitude of that of ultra low-power nodes and significantly better than that of high-end ones.
机译:本文介绍了一种原型硬件/软件体系结构,该体系结构可最大限度地减少高端微控制器的能耗,同时简化了提供通用类编程环境的应用程序的开发。实现此双重目标的关键功能是操作系统对进程的支持,优化的检测和系统状态的休眠。为了平衡高端微控制器提供的性能与超低功耗操作(尤其是WSN所要求的)之间的平衡,至关重要的是,通过使微控制器尽可能长时间保持在低功耗状态,以最小化占空比,而又不影响处理器的性能。应用程序所需的性能。为了应对当今微控制器中不断增加的泄漏电流,已实现了基于软件的休眠机制,以将进程的内存透明地保存在非易失性存储器中,从而可以完全关闭微控制器。为了进一步避免休眠期间昂贵的过程加载开销,我们设计了一种智能传感机制,该机制能够从外设收集数据而无需恢复过程状态。初步结果表明,所提出的节点体系结构的寿命与超低功耗节点的寿命数量级相同,并且明显优于高端节点。

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