Title :
Performance of an Orthogonal Diversity Combining Detector for Spread-Spectrum Signals
Author :
Watson, Susan ; Chouinard, Jean-Yves ; Bouchard, Martin
Author_Institution :
Defence R&D Ottawa, Ont.
Abstract :
A subspace-based method for detection of spread-spectrum signals is described in this paper that is similar to superresolution algorithms such as MUSIC. Sample vectors of despread symbol data are collected over time to form a correlation matrix, which is decomposed using eigenvalue decomposition (EVD). When using linear phase modulation, the despread symbol data contains multipath peaks that are due to a number of physical paths which dominate the channel impulse response. In some cases, however, multipath gains have some substantial amount of correlation, indicating that a method of decorrelation prior to combining would be beneficial. Bit error rate curves show that the performance of this method has some advantage over a simple RAKE receiver at low fading rates. However, EVD-based algorithms are computationally complex compared to the RAKE receiver. By implementing the EVD-based orthogonal diversity-combining detector for phase modulated signals on an Intel Pentium 4, it is shown in this paper that the update rate for this algorithm on a modern (1.1 GHz PIV) processor is sufficient for real-time operation
Keywords :
correlation methods; diversity reception; eigenvalues and eigenfunctions; error statistics; matrix algebra; phase modulation; radio receivers; signal detection; spread spectrum communication; transient response; wireless channels; EVD algorithm; Intel Pentium 4 processor; Rake receiver; bit error rate; channel impulse response; correlation matrix; despread symbol data; eigenvalue decomposition; linear phase modulation; orthogonal diversity-combining detector; spread-spectrum signal; subspace-based method; superresolution algorithm; Detectors; Diversity reception; Fading; Multipath channels; Multiple signal classification; Phase modulation; Signal detection; Signal resolution; Spread spectrum communication; Vectors; Orthogonal diversity; RAKE receiver; decorrelating receiver; eigenanalysis; spread-spectrum; wireless communications;
Conference_Titel :
Electrical and Computer Engineering, 2006. CCECE '06. Canadian Conference on
Conference_Location :
Ottawa, Ont.
Print_ISBN :
1-4244-0038-4
Electronic_ISBN :
1-4244-0038-4
DOI :
10.1109/CCECE.2006.277424