TY - GEN
T1 - A novel narrowband active noise control system with significantly reduced computational cost
AU - Xiao, Yegui
AU - Ma, Liying
AU - Sun, Jinwei
PY - 2008
Y1 - 2008
N2 - In conventional narrowband ANG systems, each reference cosine or sine wave has to be filtered by an estimate of the secondary-path. This filtering element is called x-filtering block. The number of xfiltering blocks is proportional to q where q is the number of targeted frequencies. When q and/or order ($MC) of estimated FIR-type secondary-path are not small, the computational cost due to the x-filtering blocks may become a bottleneck in real system implementation. Here, we propose a new narrowband ANC system structure which requires only two (2) x-filtering blocks regardless of q. All the cosine waves (or sine waves) are combined as an input to a x-filtering block. The output of this block is decomposed by an efficient bandpass filter bank into filtered-x cosine or sine waves for the filtered-x LMS (FXLMS) algorithm that follows. This way, the computational cost can be significantly reduced. Extensive simulations reveal that the new system indicates performance similar to that of the conventional system, but enjoys great advantages in system implementation.
AB - In conventional narrowband ANG systems, each reference cosine or sine wave has to be filtered by an estimate of the secondary-path. This filtering element is called x-filtering block. The number of xfiltering blocks is proportional to q where q is the number of targeted frequencies. When q and/or order ($MC) of estimated FIR-type secondary-path are not small, the computational cost due to the x-filtering blocks may become a bottleneck in real system implementation. Here, we propose a new narrowband ANC system structure which requires only two (2) x-filtering blocks regardless of q. All the cosine waves (or sine waves) are combined as an input to a x-filtering block. The output of this block is decomposed by an efficient bandpass filter bank into filtered-x cosine or sine waves for the filtered-x LMS (FXLMS) algorithm that follows. This way, the computational cost can be significantly reduced. Extensive simulations reveal that the new system indicates performance similar to that of the conventional system, but enjoys great advantages in system implementation.
UR - https://www.scopus.com/pages/publications/67249130784
U2 - 10.1109/ICOSP.2008.4697115
DO - 10.1109/ICOSP.2008.4697115
M3 - 会议稿件
AN - SCOPUS:67249130784
SN - 9781424421794
T3 - International Conference on Signal Processing Proceedings, ICSP
SP - 240
EP - 243
BT - 2008 9th International Conference on Signal Processing, ICSP 2008
T2 - 2008 9th International Conference on Signal Processing, ICSP 2008
Y2 - 26 October 2008 through 29 October 2008
ER -