网络化传感器的系统架构方向

ASPLOS IX Pub Date : 2000-11-01 DOI:10.1145/378993.379006
Jason L. Hill, R. Szewczyk, A. Woo, S. Hollar, D. Culler, K. Pister
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引用次数: 3902

摘要

集成、低功耗、CMOS通信器件和传感器的技术进步使网络化传感器的丰富设计空间成为可能。它们可以深深嵌入物理世界,像智能灰尘一样遍布我们的环境。缺少的元素是一个整体的系统架构和一个系统推进的方法论。为此,我们确定了关键需求,开发了一个代表该类的小型设备,设计了一个小型事件驱动的操作系统,并展示了它为高效的模块化和并发密集型操作提供了支持。我们的操作系统可以容纳178字节的内存,在复制1.25字节内存的时间内传播事件,在复制6字节内存的时间内进行上下文切换,并支持两级调度。该分析为未来的架构发展奠定了基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
System architecture directions for networked sensors
Technological progress in integrated, low-power, CMOS communication devices and sensors makes a rich design space of networked sensors viable. They can be deeply embedded in the physical world and spread throughout our environment like smart dust. The missing elements are an overall system architecture and a methodology for systematic advance. To this end, we identify key requirements, develop a small device that is representative of the class, design a tiny event-driven operating system, and show that it provides support for efficient modularity and concurrency-intensive operation. Our operating system fits in 178 bytes of memory, propagates events in the time it takes to copy 1.25 bytes of memory, context switches in the time it takes to copy 6 bytes of memory and supports two level scheduling. The analysis lays a groundwork for future architectural advances.
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