Title :
Multiuser detection for cooperative networks and performance analysis
Author :
Venturino, Luca ; Wang, Xiaodong ; Lops, Marco
Author_Institution :
DAEIMI Dept., Univ. degli Studi di Cassino
Abstract :
We investigate strategies for user cooperation in the uplink of a synchronous direct-sequence code-division multiple-access (DS/CDMA) network employing nonorthogonal spreading codes and analyze their performance. We consider two repetition-based relay schemes: decode-and-forward (DAF) and amplify-and-forward (AAF). Focusing on the use of linear multiuser detectors, we first present cooperation strategies, i.e., signal processing at both the relay nodes and the base station (BS), under the assumption of perfectly known channel conditions of all links; then, we consider the more practical scenario where relays and BS have only partial information about the system parameters, which requires blind multiuser detection methods. We provide performance analysis of the proposed detection strategies in terms of the (asymptotic) signal-to-(interference plus noise) ratio and the bit error rate, and we show that AAF achieves a full second-order diversity when a minimum mean-square-error detector is employed at both the relay side and the BS. A simple, yet effective, partner selection algorithm is also presented. Finally, a thorough performance assessment is undertaken to study the impact of the multiple-access interference on the proposed cooperative strategies under different scenarios and system assumptions
Keywords :
code division multiple access; codes; diversity reception; error detection; error statistics; interference (signal); least mean squares methods; multiuser detection; signal processing; spread spectrum communication; amplify-and-forward repetition-based relay scheme; asymptotic signal-to-interference plus noise ratio; base station; bit error rate; blind multiuser detection methods; cooperative networks; decode-and-forward repetition-based relay scheme; linear multiuser detection; minimum mean-square-error detector; multiple-access interference; nonorthogonal spreading codes; partner selection algorithm; performance analysis; relay nodes; second-order diversity; signal processing; synchronous direct-sequence code-division multiple-access network; user cooperation; Base stations; Bit error rate; Decoding; Detectors; Multiaccess communication; Multiuser detection; Performance analysis; Relays; Signal processing; Signal to noise ratio; Blind multiuser detection; cooperative diversity; direct-sequence code-division multiple-access (DS/CDMA); linear minimum mean-square-error detector (MMSE) detector;
Journal_Title :
Signal Processing, IEEE Transactions on
DOI :
10.1109/TSP.2006.877646