Modern wireless receivers tend to decrease power consumption. This section shows the benefits of a sub-10 µA wake-up receiver circuit used for wireless geofencing and localisation applications with very low maintenance. The proposed wake-up receiver is a wireless receiver which continuously scans the radio channel for certain wake-up messages. Having received and decoded such a message containing additional data, the wake-up receiver triggers different actions in smart objects. The wake-up receiver consumes only 7.5 Microwatts and is suitable for mobile battery-operated or solar-cell driven smart objects. It is shown how the wake-up receiver can be used to implement a wireless in-door geofencing system. This application profits the most fro...
International audienceAn ultra low power wake-up detector based on frequency analysis is presented i...
Wireless sensor networks and body area networks are both hot topics in current academic research. Th...
Thesis: S.M., Massachusetts Institute of Technology, Department of Electrical Engineering and Comput...
This paper shows the benefits of a sub-10 A wake-up receiver circuit used for wireless data receptio...
In power-limited wireless devices such as wireless sensor networks, wearable components, and Interne...
Minimizing waste of resources by reduction of battery replacements in mobile smart objects gives an ...
Abstract—Emerging wake-up radio technologies have the po-tential to bring the performance of sensing...
Emerging wake-up radio technologies have the potential to bring the performance of sensing systems a...
Emerging wake-up radio technologies have the potential to bring the performance of sensing systems a...
Energy-constrained wireless networks and devices are mainly powered by batteries, which have severel...
Energy-constrained wireless networks and devices are mainly powered by batteries, which have severel...
With the word of smart, the whole world is running on the smart technologies and smart devices which...
Wake-up radio technology helps to attenuate unnecessary power consumption by allowing a node to keep...
Recent advances in low power radio design have enabled a broad range of low activity applications su...
Today more and more wireless sensors are powered by batteries. To avoid frequent battery replacement...
International audienceAn ultra low power wake-up detector based on frequency analysis is presented i...
Wireless sensor networks and body area networks are both hot topics in current academic research. Th...
Thesis: S.M., Massachusetts Institute of Technology, Department of Electrical Engineering and Comput...
This paper shows the benefits of a sub-10 A wake-up receiver circuit used for wireless data receptio...
In power-limited wireless devices such as wireless sensor networks, wearable components, and Interne...
Minimizing waste of resources by reduction of battery replacements in mobile smart objects gives an ...
Abstract—Emerging wake-up radio technologies have the po-tential to bring the performance of sensing...
Emerging wake-up radio technologies have the potential to bring the performance of sensing systems a...
Emerging wake-up radio technologies have the potential to bring the performance of sensing systems a...
Energy-constrained wireless networks and devices are mainly powered by batteries, which have severel...
Energy-constrained wireless networks and devices are mainly powered by batteries, which have severel...
With the word of smart, the whole world is running on the smart technologies and smart devices which...
Wake-up radio technology helps to attenuate unnecessary power consumption by allowing a node to keep...
Recent advances in low power radio design have enabled a broad range of low activity applications su...
Today more and more wireless sensors are powered by batteries. To avoid frequent battery replacement...
International audienceAn ultra low power wake-up detector based on frequency analysis is presented i...
Wireless sensor networks and body area networks are both hot topics in current academic research. Th...
Thesis: S.M., Massachusetts Institute of Technology, Department of Electrical Engineering and Comput...