Title :
Highly Integrated Fractional-n Synthesizer for Locatable Wireless Sensor Nodes
Author :
Ussmuller, Thomas ; Weigel, Robert ; Eickhoff, Ralf
Author_Institution :
Univ. of Erlangen-Nuremberg, Erlangen, Germany
Abstract :
Local positioning systems significantly enhance the value of wireless sensor networks (WSN). This paper presents an integrated synthesizer for localization using frequency modulated continuous wave (FMCW) radar. The synthesizer is based on a fractional-n phase-locked loop (PLL) architecture. All components of the PLL are carefully designed with respect to their power consumption, and the digital parts are implemented in current-mode logic (CML). The complete synthesizer was manufactured in a 0.18 mum SiGe BiCMOS process from IBM, and it consumes only 100 mW, achieves a phase noise better than -117 dBc/Hz and has a silicon area of 1.15 mm2. Due to its high integration level and its optimized design, the synthesizer achieves low power consumption and low phase noise that make it suitable for precise localization in mobile sensor nodes. Localization measurements in indoor environments with multi- path propagation showed mean distance errors about 10 cm.
Keywords :
CW radar; FM radar; current-mode logic; frequency synthesizers; mobile radio; phase locked loops; wireless sensor networks; FMCW radar; SiGe BiCMOS process; current-mode logic; fractional-n phase-locked loop architecture; fractional-n synthesizer; frequency modulated continuous wave; indoor environment; local positioning system; mean distance error; mobile sensor node; multipath propagation; phase noise; power 100 mW; power consumption; size 0.18 mum; wireless sensor network; Energy consumption; Frequency modulation; Frequency synthesizers; Logic design; Manufacturing processes; Phase locked loops; Phase noise; Radar; Silicon germanium; Wireless sensor networks;
Conference_Titel :
Communications, 2009. ICC '09. IEEE International Conference on
Conference_Location :
Dresden
Print_ISBN :
978-1-4244-3435-0
Electronic_ISBN :
1938-1883
DOI :
10.1109/ICC.2009.5199053