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RF doppler shift-based mobile sensor tracking and navigation

Branislav Kusý, Isaac Amundson, János Sallai, Péter Völgyesi, Ákos Lédeczi, Xenofon Koutsoukos

Year
2010
Citations
50

Abstract

Mobile wireless sensors require position updates for tracking and navigation. We present a localization technique that uses the Doppler shift in radio transmission frequency observed by stationary sensors. We consider two scenarios. In the first, the mobile node is carried by a person. In the second, the mobile node controls a robot. In both approaches the mobile node transmits an RF signal, and infrastructure nodes measure the Doppler-shifted frequency. Such measurements enable us to calculate the position and velocity of the mobile transmitter. Our experimental results demonstrate that this technique is viable and accurate for resource-constrained mobile sensor tracking and navigation.

Keywords

Computer scienceDoppler effectTransmitterReal-time computingWireless sensor networkNode (physics)Tracking (education)Transmission (telecommunications)Mobile robotRadio frequency

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