DocumentCode :
171172
Title :
A fully-integrated 77-GHz pseudo-random noise coded Doppler radar sensor with programmable sequence generators in SiGe technology
Author :
Ng, Herman Jalli ; Feger, Reinhard ; Stelzer, Andreas
Author_Institution :
Christian Doppler Lab. for Integrated Radar Sensors, Johannes Kepler Univ. Linz, Linz, Austria
fYear :
2014
fDate :
1-6 June 2014
Firstpage :
1
Lastpage :
4
Abstract :
This paper describes a fully-integrated 77-GHz distant-selective pseudo-random noise coded Doppler radar transceiver in a Silicon-Germanium technology. The transceiver is capable of measuring a vibration or a velocity of a target at a specified distance, which is programmable and can be configured very precisely in the transceiver, and suppressing all other targets elsewhere. It is equipped with two pseudo-random binary sequence (PRBS) generators, which are implemented by using 12-stage linear-feedback shift registers (LFSRs) with a programmable primitive polynomial and can generate various maximum-length sequences to enable a high dynamic range. The LFSRs are realized in a Galois configuration and with current-mode logic gates and can thus be operated with a clock rate of up to 4.25 GHz to enable a range resolution of 3.5 cm. A single external signal source is used both as a clock for the PRBS generators and as an input signal for the frequency multiplier, which creates a carrier signal with a frequency of 76.5 GHz. Radar measurements with static as well as vibrating targets were done to show the applicability of the developed system.
Keywords :
Doppler radar; Galois fields; Ge-Si alloys; binary sequences; frequency multipliers; logic gates; pseudonoise codes; radar signal processing; shift registers; signal sources; target tracking; transceivers; Doppler radar sensor; Doppler radar transceiver; Galois configuration; LFSR; PRBS generators; SiGe; SiGe technology; current-mode logic gates; frequency 4.25 GHz; frequency 76.5 GHz; frequency 77 GHz; frequency multiplier; high dynamic range; linear-feedback shift registers; maximum-length sequences; programmable primitive polynomial; programmable sequence generators; pseudo-random binary sequence generators; pseudo-random noise; radar measurements; signal source; velocity target; vibrating targets; Clocks; Decoding; Frequency modulation; Integrated circuit modeling; Logic gates; Mixers; Synchronization; 77-GHz radar; current-mode logic; doppler radar; emitter-coupled logic; linear-feedback shift register; pseudo-random binary sequence; pseudo-random noise; silicon-germanium technology; ultra-wideband radar;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Microwave Symposium (IMS), 2014 IEEE MTT-S International
Conference_Location :
Tampa, FL
Type :
conf
DOI :
10.1109/MWSYM.2014.6848382
Filename :
6848382
Link To Document :
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