Title :
A High Spectrum Efficiency Transmission Scheme
Author :
Yang, Menghui ; Li, Tonghong ; Yang, Weikang ; Su, Xin ; Wang, Jing
Author_Institution :
Sch. of Inf. Resource Manage., Renmin Univ. of China, Beijing, China
Abstract :
In order to improve the transmission performance in inter-symbol interference channel, a controlled inter-symbol overlapping transmission scheme to obtain high frequency efficiency, which is called inter-symbol overlapping transmission (ISOT), is studied. ISOT allows K symbols to be simultaneously transmitted without increasing channel bandwidth, and the symbol transmission interval can be decreased to Ts/K, assuming that Ts is the symbol duration. In additive white gaussian noise (AWGN) channel, we study the ISOT system which symbol rate is greater than system bandwidth. Though inter-symbol overlapping transmission doesn´t increase channel bandwidth, the spectrum efficiency can be increased by K times in theory. Simulation results show that ISOT can achieve higher spectrum efficiency compared with high dimension modulation, even if low dimension BPSK or QPSK modulation is used. Furthermore, we integrate ISOT with single-carrier frequency domain equalization (SC-FDE) and evaluate its BER performance. Simulation results show that ISOT integrated with SC-FDE has significant performance improvement comparing to SC-FDE with 2K-QAM, while ISOT uses QPSK modulation to transmit K symbols simultaneously. Simulation also shows that the more the symbols overlapping, the more the performance improvement. Inter-symbol overlapping transmission scheme can be used in mobile device and used as a uplink transmission technology in mobile communication systems, such as B3G or 4G, to provide higher spectrum efficiency.
Keywords :
AWGN channels; equalisers; error statistics; frequency-domain analysis; intersymbol interference; mobile communication; quadrature phase shift keying; AWGN channel; BER performance; BPSK modulation; QPSK modulation; additive white gaussian noise; bit error rate; high spectrum efficiency transmission scheme; intersymbol interference channel; mobile communication system; mobile device; single-carrier frequency domain equalization; spectrum efficiency; 4G mobile communication; AWGN; Additive white noise; Bandwidth; Binary phase shift keying; Bit error rate; Communications technology; Frequency domain analysis; Interference channels; Quadrature phase shift keying;
Conference_Titel :
Scalable Computing and Communications; Eighth International Conference on Embedded Computing, 2009. SCALCOM-EMBEDDEDCOM'09. International Conference on
Conference_Location :
Dalian
Print_ISBN :
978-0-7695-3825-9
DOI :
10.1109/EmbeddedCom-ScalCom.2009.38