Optimizing sensor networks in the energy-latency-density design space
University of California, Los Angeles · Embedded Systems (United States)
Abstract
In wireless sensor networks, energy efficiency is crucial to achieving satisfactory network lifetime. To reduce the energy consumption significantly, a node should turn off its radio most of the time, except when it has to participate in data forwarding. We propose a new technique, called sparse topology and energy management (STEM), which efficiently wakes up nodes from a deep sleep state without the need for an ultra low-power radio. The designer can trade the energy efficiency of this sleep state for the latency associated with waking up the node. In addition, we integrate STEM with approaches that also leverage excess network density. We show that our hybrid wakeup scheme results in energy savings of over…
Citation impact
- FWCI
- 29.56
- Percentile
- 100%
- References
- 17
Authors
4- CSCurt SchurgersCorresponding
University of California, Los Angeles, Embedded Systems (United States)
- VTVlasios Tsiatsis
University of California, Los Angeles, Embedded Systems (United States)
- SGSaurabh Ganeriwal
University of California, Los Angeles, Embedded Systems (United States)
- MSMani Srivastava
Embedded Systems (United States), University of California, Los Angeles
Topics & keywords
- Computer science
- Wireless sensor network
- Computer network
- Energy consumption
- Latency (audio)
- Efficient energy use
- Leverage (statistics)
- Network topology
- Affordable and clean energy