Title :
Fuzzy logic denoising of the miniaturized inertial sensors in redundant configurations
Author :
Grigorie, Teodor Lucian ; Edu, Ioana Raluca ; Corcau, Jenica Ileana
Author_Institution :
Avionics Div., Univ. of Craiova, Dolj, Romania
Abstract :
The paper presents a fuzzy logic based algorithm to reduce the noise of the miniaturized inertial sensors used in strap-down inertial navigation systems (SDINS) in linear redundant configurations. The algorithm idea is to establish a weight for each sensor from an SDINS axis (measuring acceleration or angular speed) as a function of the standard deviation of the last m samples acquired from it by using the fuzzy logic techniques. The chosen fuzzy controller is of type "P" that means it realizes proportionality between the input (standard deviation of the last m samples acquired from sensor) and the output (sensor weight). Three membership functions are considered both for input and for output. Also, the MAX-MIN inference method is used for fuzzyfication, while the centroid method is used for defuzzyfication. The algorithm is implemented in Matlab-Simulink and numerical simulated in two configurations: with four sensors, respectively with nine sensors, in the redundant array mounted on the SDINS axis.
Keywords :
aerospace computing; control engineering computing; fuzzy control; inertial navigation; inference mechanisms; minimax techniques; MAX-MIN inference method; centroid method; defuzzyfication; fuzzy controller; fuzzy logic denoising; fuzzyfication; linear redundant configurations; miniaturized inertial sensors; sensor weight; strap down inertial navigation systems; Acceleration; Fuzzy logic; Navigation; Noise; Sensor arrays; Inertial navigation; data fusion; fuzzy logic; miniaturized sensors; noise reduction; redundant configurations;
Conference_Titel :
Information Technology Interfaces (ITI), Proceedings of the ITI 2011 33rd International Conference on
Conference_Location :
Dubrovnik
Print_ISBN :
978-1-61284-897-6
Electronic_ISBN :
1330-1012