Title :
Adaptive EKF-CMAC-Based Multisensor Data Fusion for Maneuvering Target
Author :
Chih-Min Lin ; Chi-Shun Hsueh
Author_Institution :
Dept. of Electr. Eng., Yuan Ze Univ., Chungli, Taiwan
Abstract :
In the multisensor passive location, the direction of arrival (DOA) and time differences of arrival (TDOA) are the most useful detection data. Applying multiple sensors to locate and track a maneuvering target is, in fact, a nonlinear uncertain problem. The extended Kalman filter (EKF) is usually used for maneuvering target tracking; however, this algorithm cannot achieve accurate estimation for uncertain or nonlinear systems. In order to increase the accuracy of locating and tracking of a maneuvering target, this paper proposes a novel EKF-cerebellar-model-articulation-controller (EKF-CMAC) multisensor data fusion algorithm for a 3-D maneuvering target. By combining the EKF with an adaptive CMAC, the tracking error of a maneuvering target can be much reduced. The Monte Carlo numerical simulation results illustrate that the proposed algorithm can achieve high accuracy for locating and tracking a maneuvering target.
Keywords :
Kalman filters; Monte Carlo methods; adaptive control; adaptive filters; cerebellar model arithmetic computers; direction-of-arrival estimation; military equipment; military radar; neurocontrollers; nonlinear control systems; numerical analysis; radar tracking; sensor fusion; time-of-arrival estimation; 3D maneuvering target tracking error; DOA; EKF-cerebellar-model-articulation-controller multisensor data fusion algorithm; Monte Carlo numerical simulation; TDOA; adaptive EKF-CMAC-based multisensor data fusion; direction of arrival; multisensor passive location; nonlinear control system; nonlinear uncertain problem; radial basis function neural network; time differences of arrival; Acceleration; Data integration; Estimation; Kalman filters; Radar tracking; Sensors; Target tracking; Cerebellar model articulation controller (CMAC); direction of arrival (DOA); extended Kalman filter (EKF); multisensor data fusion; time differences of arrival;
Journal_Title :
Instrumentation and Measurement, IEEE Transactions on
DOI :
10.1109/TIM.2013.2247712