A beam scanning-based indoor localization system using light emitting diodes

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Abstract

In this paper, an indoor localization system using light emitting diodes (LEDs) is presented. Location of an object is determined by scanning two LEDs at pre-defined angles which are modulated at different frequencies. During scanning process, for each LED, two maximum values of received signal strength (RSS) are logged and this information is used to compute the position of an object. Time division multiplexing (TDM) is used to incorporate angle information at the receiver. A bicubic spline interpolation is applied to estimate the position of an object. Simulations are executed for a typical indoor environment with dimensions of (3 × 3 × 2 m3) and results are validated using experiments. The experimental results confirm that proposed beam scanning approach can be used to determine the location of an object precisely.

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Saadi, M., Zhao, Y., Naseer, O., & Wuttisttikulkij, L. (2016). A beam scanning-based indoor localization system using light emitting diodes. Engineering Journal, 20(3), 197–206. https://doi.org/10.4186/ej.2016.20.3.197

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