Title :
Software defined radio IR-UWB positioning platform for RFID and WSN application
Author :
Zhai, Chuanying ; Zou, Zhuo ; Zheng, Lirong
Author_Institution :
iPack Vinn Excellence Center, KTH-R. Inst. of Technol., Stockholm, Sweden
Abstract :
This paper presents a software defined radio (SDR) platform for Impulse Ultra-Wideband (IR-UWB) sensing and positioning applications. The platform is composed by a software simulator (SW) and a hardware testbed (HW). The software simulator based on Matlab offers reconfigurable modules/functions of UWB systems with a graphic user interface (GUI). Correspondingly, the testbed is implemented by an oscilloscope and a set of off-the-shelf components. The oscilloscope (Lecroy WaveMaster 816Zi-A) features high-speed real-time sampling (i.e., 40 GS/s with 16 GHz analog bandwidth) with 4 independent channels, enabling a multi-antenna multichannel receiver network in UWB bands, with signal processing capability at the Nyquist rate. The SW and HW are seamlessly integrated by the build-in software in the oscilloscope. It allows rapid prototypes of various algorithms to be verified in real environments. Finally, a case study on UWB ranging for localization is given to demonstrate the feasibility and usability of the proposed platform.
Keywords :
graphical user interfaces; radiofrequency identification; software radio; telecommunication computing; ultra wideband communication; wireless sensor networks; GUI; IR UWB positioning platform; Matlab; Nyquist rate; RFID; UWB bands; UWB system; WSN application; graphic user interface; hardware testbed; high speed real time sampling; impulse ultra wideband; multiantenna multichannel receiver network; oscilloscope; signal processing capability; software defined radio platform; software simulator; Distance measurement; Hardware; Oscilloscopes; Position measurement; Receivers; Software; Software algorithms; IR-UWB; SDR platform; hardware testbed; software simulator;
Conference_Titel :
Ultra-Wideband (ICUWB), 2012 IEEE International Conference on
Conference_Location :
Syracuse, NY
Print_ISBN :
978-1-4577-2031-4
DOI :
10.1109/ICUWB.2012.6340400