TY - GEN
T1 - Target tracking in Interference Environments reinforcement learning and design for cognitive radar soft processing
AU - Zhou, Feng
AU - Zhou, Deyun
AU - Yu, Geng
PY - 2008
Y1 - 2008
N2 - For target tracking in Interference Environments of cognitive radar problem, Extended Karman, Particle filter algorithms etc. are generally used to be regarded as usual solutions to state estimation. Many techniques have been developed to improve performance of target tracking. In this paper, we set the structure and key features of target's tracking design for cognitive radar, and newly propose cognitive tracking filter algorithm based on the VS multiple models PF (VS-MMPF), Elman NN and the group methods for data processing (GMDH). The cognitive tracking algorithm is capable of solving the accuracy of the estimation around the likely points. We applied the proposed algorithm to the cognitive radar tracking problems especially emphasis on reinforcement learning, choice of algorithms, recognizing severe circumstances and information preservation. Simulation results showed that the design of cognitive tracking had superior performance on the accuracy and robust of tracking, compared with the general approaches.
AB - For target tracking in Interference Environments of cognitive radar problem, Extended Karman, Particle filter algorithms etc. are generally used to be regarded as usual solutions to state estimation. Many techniques have been developed to improve performance of target tracking. In this paper, we set the structure and key features of target's tracking design for cognitive radar, and newly propose cognitive tracking filter algorithm based on the VS multiple models PF (VS-MMPF), Elman NN and the group methods for data processing (GMDH). The cognitive tracking algorithm is capable of solving the accuracy of the estimation around the likely points. We applied the proposed algorithm to the cognitive radar tracking problems especially emphasis on reinforcement learning, choice of algorithms, recognizing severe circumstances and information preservation. Simulation results showed that the design of cognitive tracking had superior performance on the accuracy and robust of tracking, compared with the general approaches.
UR - https://www.scopus.com/pages/publications/52149086996
U2 - 10.1109/CISP.2008.236
DO - 10.1109/CISP.2008.236
M3 - 会议稿件
AN - SCOPUS:52149086996
SN - 9780769531199
T3 - Proceedings - 1st International Congress on Image and Signal Processing, CISP 2008
SP - 73
EP - 77
BT - Proceedings - 1st International Congress on Image and Signal Processing, CISP 2008
T2 - 1st International Congress on Image and Signal Processing, CISP 2008
Y2 - 27 May 2008 through 30 May 2008
ER -