Title :
An impulse radio UWB transmitter for communication and precise localization
Author :
Martynenko, Denys ; Fischer, Georg ; Klymenko, Oleksiy
Author_Institution :
IHP, Frankfurt (Oder), Germany
Abstract :
This paper describes a monolithic integrated transmitter intended for impulse radio (IR) Ultra-wide band (UWB) indoor communication and indoor localization. The transmitter operates in the higher UWB band centered at 7.25 GHz and generates impulses with bandwidth of 2.08 GHz. Consequently, the transmitter utilizes for communication and ranging complete UWB band assigned for Europe. The average pulse repetition frequency of 56.64 MHz and a 3-bits pulse position modulation (8-PPM) provides data rates up to 169.92 MBit/sec. Additionally, the driver amplifier with a fast switchable current bias is introduced into the transmitter for power efficient operation. The switch-on time of the bias is equal to 8ns. Besides the communication capability, an advanced time-of-arrival measurement extension is implemented in the transmitter. It runs with the clock of 3.625 GHz and allows the distance measurements with an accuracy of 275 picoseconds (translates to ranging accuracy of approximately 8.3 cm).
Keywords :
indoor radio; microwave measurement; pulse position modulation; radio transmitters; time-of-arrival estimation; ultra wideband communication; Europe; IR UWB indoor communication; UWB band; advanced time-of-arrival measurement extension; average pulse repetition frequency; bandwidth 2.08 GHz; bit rate 169.92 Mbit/s; frequency 3.625 GHz; frequency 56.64 MHz; frequency 7.25 GHz; impulse radio UWB transmitter; impulse radio ultrawide indoor communication; monolithic integrated transmitter; pulse position modulation; switch-on time; time 275 ps; word length 3 bit; Binary phase shift keying; Distance measurement; Radio frequency; Radio transmitters; Receivers; Switches; Bipolar/BiCMOS process technology; UWB transmitter; indoor localization; ultra-wideband;
Conference_Titel :
Silicon Monolithic Integrated Circuits in RF Systems (SiRF), 2013 IEEE 13th Topical Meeting on
Conference_Location :
Austin, TX
Print_ISBN :
978-1-4673-1552-4
Electronic_ISBN :
978-1-4673-1551-7
DOI :
10.1109/SiRF.2013.6489435