Title :
An improved scheme for noise reduction to DCSK based on its retransmission characteristic
Author :
Wang Zhenchao ; Zhang Shibing
Author_Institution :
Coll. of Electron. & Inf. Eng., Hebei Univ., Baoding, China
Abstract :
In chaos communication schemes, the differential chaos shift keying(DCSK) is a noncoherent scheme with correlation detector. In spite of this there is currently no established procedures attaching importance to the correlation of noises within a code period, which is one of the reasons for the degradation of performance of DCSK system. This paper put forward an improved scheme for noise reduction to DCSK communication system based on its retransmission characteristic. By exploiting the fact that the adjacent noise in the channel is correlated, the proposed scheme adds a phase inversion device at the receiver. The demodulation of improved DCSK scheme is also achieved by a correlation detector. Both the theoretical analysis and the simulation results show that the proposed scheme can greatly improve the BER performance of communication systems, especially for low signal-to-noise ratio (SNR). The proposed scheme can be applied to the systems having a high requirement on data transmission reliability but suffering from hostile communication channels, such as the low-voltage power line(L-PLC) communication systems.
Keywords :
chaotic communication; data communication; error statistics; interference suppression; phase shift keying; telecommunication network reliability; BER performance; DCSK communication system; DCSK system; chaos communication scheme; correlation detector; data transmission reliability; demodulation; differential chaos shift keying; hostile communication channel; low signal-to-noise ratio; low-voltage power line communication system; noise reduction; phase inversion device; receiver; retransmission characteristic; simulation result; theoretical analysis; Chaotic communication; Communication systems; Degradation; Demodulation; Detectors; Joining processes; Noise reduction; Phase noise; Power system reliability; Signal analysis; DCSK; L-PLC; chaos communication; phase inversion;
Conference_Titel :
Computer Science & Education, 2009. ICCSE '09. 4th International Conference on
Conference_Location :
Nanning
Print_ISBN :
978-1-4244-3520-3
Electronic_ISBN :
978-1-4244-3521-0
DOI :
10.1109/ICCSE.2009.5228425