Title :
A DS-CDMA Interference Cancellation technique for body area networks
Author :
Yang, Wen-Bin ; Sayrafian-Pour, Kamran
Author_Institution :
Inf. Technol. Lab., Nat. Inst. of Stand. & Technol., MA, USA
Abstract :
A low complexity Parallel Interference Cancellation (PIC) technique that is applicable to body area networks (BANs) is presented. Using Direct-Sequence Code Division Multiple Access (DS-CDMA), the technique aims at suppressing interference caused by rapid changes in relative sensors position due to body parts motion as well as interference from adjacent BANs. Interference signal is estimated using a relationship between cyclic correlation of the received signal and interferer code without requiring any knowledge of the channel condition. The codes for the multi-sensor DS-CDMA communication are constructed by using a set of m-sequences. The cyclic correlation is performed using Fast Walsh-Hadamard Transform (FWHT) which exhibits low computational complexity. In addition to low complexity, the proposed technique does not require complicated channel condition estimation and has no convergence issues. The uncoded Bit Error Rate (BER) performance of the proposed interference cancellation over a body-surface channel is calculated and compared with the conventional scheme.
Keywords :
Hadamard transforms; body area networks; channel estimation; code division multiple access; computational complexity; error statistics; interference suppression; BER; DS-CDMA interference cancellation technique; body area networks; body-surface channel; channel condition estimation; computational complexity; cyclic correlation; direct-sequence code division multiple access; fast Walsh-Hadamard transform; interference signal; low complexity parallel interference cancellation technique; m-sequences; multisensor DS-CDMA communication; uncoded bit error rate performance; Bit error rate; Body area networks; Complexity theory; Interference cancellation; Multiaccess communication; Sensors; Body area networks; Direct-sequence code division multiple access; Fast Walsh-Hadamard transformation; Interference cancellation;
Conference_Titel :
Personal Indoor and Mobile Radio Communications (PIMRC), 2010 IEEE 21st International Symposium on
Conference_Location :
Instanbul
Print_ISBN :
978-1-4244-8017-3
DOI :
10.1109/PIMRC.2010.5671929