Title :
Multi access interference reduction in STBC MC-CDMA using binary orthogonal complementary sequence
Author :
Mohammed, V. Noor ; Kabra, Aditya ; Mallick, P.S. ; Nithyanandan, L.
Author_Institution :
VIT Univ., Vellore, India
Abstract :
Higher bit rates and enhanced reception are required by the next generation communication systems to sustain multimedia traffic and this stimulates the researchers to work on technologies that can fulfil these requirements. One of the most successful technologies that have emerged is Multicarrier Code Division Multiple Access (MC-CDMA). Moreover with space time block coding (STBC) technique, MC-CDMA systems can have an added merit of transmit diversity. In this paper, we have developed an STBC MC-CDMA system and evaluated it for Multiple access interference (MAI) based on different spreading codes. We have employed three spreading codes namely orthogonal Gold code, Walsh Hadamard code and orthogonal complementary sequence. We have compared the performance of these codes in both 64 and 128 subcarrier systems and find that the orthogonal complementary sequence performs better than the other two in both the scenarios.
Keywords :
Gold codes; Hadamard codes; Internet; code division multiple access; diversity reception; multimedia communication; next generation networks; orthogonal codes; radiofrequency interference; space-time block codes; telecommunication services; telecommunication traffic; STBC MC-CDMA system; Walsh Hadamard code; binary orthogonal complementary sequence; bit rates; mobile Internet services; multicarrier code division multiple access; multimedia services; multimedia traffic; multiple access interference reduction; next generation communication systems; orthogonal Gold code; reception enhancement; space time block coding technique; spreading codes; subcarrier systems; transmit diversity; Bit error rate; Computers; Error correction; Error correction codes; Gold; Interference; Multicarrier code division multiple access; MAI; MC-CDMA; Orthogonal Gold code; Orthogonal complementary sequence; STBC; Walsh Hadamard code;
Conference_Titel :
Circuit, Power and Computing Technologies (ICCPCT), 2015 International Conference on
Conference_Location :
Nagercoil
DOI :
10.1109/ICCPCT.2015.7159486