Title :
High-resolution indoor positioning system using SDR modules
Author :
Gaber, Abdo ; Prcanovic, Samir ; Omar, Abbas
Author_Institution :
Microwave & Commun. Eng., Univ. of Magdeburg, Magdeburg, Germany
Abstract :
In this work, the problem of estimating the time difference of arrival (TDOA) associated with wideband orthogonal multi-carrier signals in multipath communication channels has been investigated using a single transmitter and a number of receiving base stations (BSs). Each BS has its own RF front-end including the local oscillator, filters, mixers, amplifiers, etc. Consequently, a precise estimation of time delays is not possible. Therefore, a technique to fully synchronize the BSs should be implemented. Using external reference to provide the clock frequency and sample time is not enough for a perfectly synchronized network. The phase uncertainties should be aligned by calibrating the estimated TDOAs. The software defined radio (SDR) modules are used to build a real system to measure the performance of the proposed wireless indoor positioning system using IEEE 802.11ac system parameters. Results show that an accuracy in the range of 3 cm can be achieved for 2 D wireless indoor positioning by using 20 MHz bandwidth.
Keywords :
indoor navigation; indoor radio; multipath channels; radio transmitters; software radio; time-of-arrival estimation; wireless LAN; BS; IEEE 802.11ac system; RF front-end; SDR module; TDOA estimation; bandwidth 20 MHz; base station; high-resolution wireless indoor positioning system; local oscillator; multipath communication channel; software defined radio module; time difference of arrival estimation; wideband orthogonal multicarrier signal; Calibration; Delay effects; Matrix decomposition; OFDM; Radio frequency; Synchronization; Wireless communication; IEEE 802.11 standards; OFDM; SDR; phase calibration; time delay estimation; unitary matrix pencil;
Conference_Titel :
Radio and Wireless Symposium (RWS), 2015 IEEE
Conference_Location :
San Diego, CA
DOI :
10.1109/RWS.2015.7129765