DocumentCode
831427
Title
A feasible noise estimation algorithm for resource-limited sensor systems
Author
Sauter, Thilo ; Nachtnebel, Herbert
Author_Institution
Inst. of Comput. Technol., Vienna Univ. of Technol., Wien, Austria
Volume
52
Issue
6
fYear
2003
Firstpage
1854
Lastpage
1858
Abstract
Fault tolerance and self-checking capabilities are key features of modern smart sensors, which often require the integration of additional signal processing facilities. In high-volume production areas such as automotive applications, however, optimized controllers are employed that typically have only limited computing resources. This paper examines several algorithms to assess the noise in a quasi-closed loop measurement channel under the assumption that the stimulus can be held constant during noise measurement. Starting from the definition of standard deviation, we propose several modifications and obtain an easy-to-implement algorithm relying entirely on addition and shift operations. Numerical experiments based on simulated and measured noise verify the practicability of the approach. The proposed algorithm has already been successfully implemented in a capacitive angular speed sensor system for automotive applications.
Keywords
angular velocity measurement; capacitive sensors; fault tolerance; intelligent sensors; random noise; recursive estimation; addition shift operations; angular speed sensor; automotive applications; capacitive sensor; dedicated microcontroller; fault tolerance; feasible noise estimation algorithm; integrated sensor; quasi-closed loop measurement channel; resource-limited computing; resource-limited sensor systems; self-checking; simple recursion; smart sensors; standard deviation; Automotive applications; Capacitive sensors; Electromagnetic measurements; Intelligent sensors; Noise measurement; Production; Sensor phenomena and characterization; Sensor systems; Signal processing algorithms; Signal to noise ratio;
fLanguage
English
Journal_Title
Instrumentation and Measurement, IEEE Transactions on
Publisher
ieee
ISSN
0018-9456
Type
jour
DOI
10.1109/TIM.2003.820491
Filename
1246560
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