System architecture directions for networked sensors
Направления развития системной архитектуры сетевых сенсоров
2000-11-01
SCID: 54.1/phh7tp9y
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event-driven operating systemlow-power CMOS devicesnetworked sensorssystem architecturetwo-level scheduling
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Abstract (AI)
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.
Key Findings
1
Event propagation takes the time required to copy 1.25 bytes of memory, and context switching takes the time required to copy 6 bytes.
2
It develops a representative miniature networked-sensor device and a tiny event-driven operating system for deeply embedded sensor networks.
3
The operating system supports efficient modularity and concurrency-intensive operation while occupying only 178 bytes of memory.
4
The operating system supports two-level scheduling, providing groundwork for future architectural advances in networked sensors.
5
The paper identifies overall system architecture and systematic development methodology as missing foundations for viable networked sensor systems.
Research Object
Networked sensors (integrated, low-power, CMOS communication devices and sensors representative of smart-dust class)
Research Subject
system architecture requirements and operating-system support for efficient modularity and concurrency-intensive operation
Publication Details
Publication Date
2000-11-01
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