TY - GEN
T1 - Multi-target tracking via multiple cost-reference particle filtering
AU - Bugallo, Mónica F.
N1 - Publisher Copyright:
© 2015 IEEE.
PY - 2015/6/5
Y1 - 2015/6/5
N2 - In this paper we address the problem of multi-target tracking in a network of sensors collecting received signal strength measurements. In order to deal with the nonlinear nature of the system, we apply the particle filtering methodology. The focus is on high-dimensional systems, i.e., scenarios with large number of targets. This justifies the use of an interconnected bank of particle filters. At each algorithmic step, each individual particle filter tracks one target, thereby minimizing the load of each filter. The filters need to send/receive the necessary information to/from other filters for correct functioning and accurate performance. The individual filters do not use any probabilistic assumption about the noises in the system in order to obtain a more robust scheme. Alternatively, they employ a user-defined cost function, which makes the resulting method more flexible. Computer simulations show the validity of the approach and reveal a good performance of the proposed method when compared to existing techniques.
AB - In this paper we address the problem of multi-target tracking in a network of sensors collecting received signal strength measurements. In order to deal with the nonlinear nature of the system, we apply the particle filtering methodology. The focus is on high-dimensional systems, i.e., scenarios with large number of targets. This justifies the use of an interconnected bank of particle filters. At each algorithmic step, each individual particle filter tracks one target, thereby minimizing the load of each filter. The filters need to send/receive the necessary information to/from other filters for correct functioning and accurate performance. The individual filters do not use any probabilistic assumption about the noises in the system in order to obtain a more robust scheme. Alternatively, they employ a user-defined cost function, which makes the resulting method more flexible. Computer simulations show the validity of the approach and reveal a good performance of the proposed method when compared to existing techniques.
UR - https://www.scopus.com/pages/publications/84940676273
U2 - 10.1109/AERO.2015.7119037
DO - 10.1109/AERO.2015.7119037
M3 - Conference contribution
AN - SCOPUS:84940676273
T3 - IEEE Aerospace Conference Proceedings
BT - 2015 IEEE Aerospace Conference, AERO 2015
PB - IEEE Computer Society
T2 - 2015 IEEE Aerospace Conference, AERO 2015
Y2 - 7 March 2015 through 14 March 2015
ER -