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Wake-up radio receiver based power minimization techniques for wireless sensor networks: A review
Affiliation:1. Department of Information Technology and Electrical Engineering, ETH Zurich, Switzerland;2. ABB Corporate Research, Baden-Dättwil, Switzerland;3. Department of Electrical and Electronic Engineering, University College Cork, Ireland;1. Engineering Sector of Broadcast, Egyptian Radio and Television Union, Egypt;2. Department of Electronics and Communications, Faculty of Electronic Engineering, Menoufia University, Menouf 32952, Egypt;3. Department of Computer Science and Information, Arts and Science College, Salman Bin Abdulaziz University, 054-11991 Wadi Adwassir, Riyadh, Saudi Arabia;4. Electrical Engineering Department, KACST-TIC in Radio Frequency and Photonics for the e-Society (RFTONICS), King Saud University, Saudi Arabia;5. KACST-TIC in Radio Frequency and Photonics for the e-Society (RFTONICS), King Saud University, Saudi Arabia;1. Electrical and Electronics Engineering Department, Universiti Teknologi PETRONAS, Bandar Seri Iskandar, 31750 Tronoh, Perak, Malaysia;2. School of Computer and Communication Engineering, Universiti Malaysia Perlis, Malaysia
Abstract:In a short period of time Wireless Sensor Networks (WSN) captured the imagination of many researchers with the number of applications growing rapidly. The applications span large domains including mobile digital health, structural and environmental monitoring, smart home, energy efficient buildings, agriculture, smart cities, etc. WSN are also an important contributor to the fast emerging Internet of Things infrastructure. Some of the design specifications for WSN include reliability, accuracy, cost, deployment versatility, power consumption, etc. Power consumption is (most often) the dominant constraint in designing such systems. This constraint has multi-dimensional implications such as battery type and size, energy harvester design, lifetime of the deployment, intelligent sensing capability, etc. Power optimization techniques have to explore a large design search space. Energy neutral system implementation is the ultimate goal in wireless sensor networks ensuring a perpetual/greener use and represents a hot topic of research. Several recent advances promise significant reduction of the overall sensor network power consumption. These advances include novel sensors and sensor interfaces, low energy wireless transceivers, low power processing, efficient energy harvesters, etc. This paper reviews a number of system level power management methodologies for Wireless Sensor Networks. Especially, the paper is focusing on the promising technology of nano-Watt wake-up radio receiver and its combination with mature power management techniques to achieve better performance. Some of the presented techniques are then applied in the context of low cost and battery powered toy robots.
Keywords:Power management  Power gating  Dynamic frequency voltage scaling  Wake-up radio receiver  Smart harvesting  Multi-radio wireless sensor networks
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