DocumentCode :
289902
Title :
Design of data fusion system for multiradar target detection
Author :
Okello, Nickens N. ; Thomopoulos, Stelios C A
Author_Institution :
Decision & Control Syst. Lab., Pennsylvania State Univ., University Park, PA, USA
fYear :
1993
fDate :
17-20 Oct 1993
Firstpage :
672
Abstract :
A robust Constant False Alarm Rate (CFAR) distributed detection system that operates in heavy clutter with unknown distribution is presented. The system is designed to provide CFARness under clutter power fluctuations and robustness under unknown clutter and noise distributions. The system is also designed to operate successfully under different-power sensors and exhibit fault-tolerance in the presence of sensor power fluctuations. The test statistic at each sensor is a robust CFAR t-statistic. In addition to the primary binary decisions, confidence levels are generated with each decision and used in the fusion logic to robustify the fusion performance and eliminate weaknesses of the Boolean fusion logic. The test statistic and the fusion logic are analyzed theoretically for Weibull and log-normal clutter. The theoretical performance is compared against Monte-Carlo simulations that verify that the system exhibits the desired characteristics of CFARness, robustness, insensitivity to power fluctuations and fault-tolerance. The system is tested with experimental target-in-clear and target-in-clutter data and its experimental performance agrees with the theoretically predicted behavior
Keywords :
Boolean functions; Fault tolerant systems; Fluctuations; Fusion power generation; Logic testing; Noise robustness; Object detection; Sensor systems; Statistical analysis; Statistical distributions;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Systems, Man and Cybernetics, 1993. 'Systems Engineering in the Service of Humans', Conference Proceedings., International Conference on
Conference_Location :
Le Touquet
Print_ISBN :
0-7803-0911-1
Type :
conf
DOI :
10.1109/ICSMC.1993.385094
Filename :
385094
Link To Document :
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