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An Ultra Low-Power Processor for Sensor Networks

机译:用于传感器网络的超低功耗处理器

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We present a novel processor architecture designed specifically for use in low-power wireless sensor-network nodes. Our sensor network asynchronous processor (SNAP/LE) is based on an asynchronous data-driven 16-bit RISC core with an extremely low-power idle state, and a wakeup response latency on the order of tens of nanoseconds. The processor instruction set is optimized for sensor-network applications, with support for event scheduling, pseudo-random number generation, bitfield operations, and radio/sensor interfaces. SNAP/LE has a hardware event queue and event coprocessors, which allow the processor to avoid the overhead of operating system software (such as task schedulers and external interrupt servicing), while still providing a straightforward programming interface to the designer. The processor can meet performance levels required for data monitoring applications while executing instructions with tens of picojoules of energy. We evaluate the energy consumption of SNAP/LE with several applications representative of the workload found in data-gathering wireless sensor networks. We compare our architecture and software against existing platforms for sensor networks, quantifying both the software and hardware benefits of our approach.
机译:我们提出了一种新颖的处理器体系结构,该体系结构专门设计用于低功率无线传感器网络节点。我们的传感器网络异步处理器(SNAP / LE)基于异步数据驱动的16位RISC内核,具有极低的功耗空闲状态,并且唤醒响应延迟约为数十纳秒。处理器指令集针对传感器网络应用进行了优化,并支持事件调度,伪随机数生成,位域操作和无线电/传感器接口。 SNAP / LE具有硬件事件队列和事件协处理器,它们使处理器能够避免操作系统软件(例如任务计划程序和外部中断服务)的开销,同时仍为设计人员提供直接的编程接口。在执行数十皮焦耳的指令执行时,处理器可以满足数据监视应用程序所需的性能水平。我们使用代表数据收集无线传感器网络中工作量的几种应用程序评估SNAP / LE的能耗。我们将我们的体系结构和软件与现有的传感器网络平台进行了比较,从而量化了我们方法的软件和硬件优势。

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