DocumentCode :
3582081
Title :
Evaluation and implementation of cyclic permutation coding for power line communications
Author :
Ogunyanda, K. ; Familua, A.D. ; Swart, T.G. ; Ferreira, H.C. ; Cheng, L. ; Shongwe, T.
Author_Institution :
Dept. of Electr. & Electron. Eng. Sci., Univ. of Johannesburg, Johannesburg, South Africa
fYear :
2014
Firstpage :
1
Lastpage :
7
Abstract :
Noise and attenuation, in the form of frequency disturbance, impulsive noise, additive white Gaussian noise (AWGN) and frequency selective fading, are the major setbacks in power line communications (PLC). In order to effectively combat this challenge, we thus report the development and implementation of a specially coded M-ary differential phase shift keying modulation scheme on narrowband PLC channel. The coding aspect involves the concatenation of conventional Reed Solomon (RS) code with cyclic permutation coding (CPC), resulting in what is termed RS-CPC scheme. The CPC employed in this work maps the output bits of a binary RS code onto non-binary CPC symbols, in a cyclic manner, with a view to improving the distance between two different sets of mapped symbols. For implementation over 230 V AC power line, software defined radio hardware, called the universal software radio peripherals (USRPs), were used, together with narrowband coupling circuits, to couple the signal to and receive it from the power line. Both by simulation and implementation, our scheme outperforms the conventional Reed Solomon-convolutional coding (RS-CC) specified in the G3-PLC standard. An added advantage is that our scheme is easier to implement.
Keywords :
AWGN channels; Reed-Solomon codes; binary codes; carrier transmission on power lines; channel coding; convolutional codes; coupled circuits; cyclic codes; differential phase shift keying; fading channels; impulse noise; modulation coding; software radio; AC power line; G3-PLC standard; M-ary differential phase shift keying modulation scheme; RS-CC scheme; RS-CPC scheme; Reed -Solomon convolutional coding scheme; USRP; additive white Gaussian noise; binary Reed-Solomon code concatenation; cyclic permutation coding; frequency disturbance; frequency selective fading; impulsive noise; narrowband PLC channel; narrowband coupling circuit; non-binary CPC symbols; power line communication; software defined radio hardware; universal software radio peripherals; Decoding; Encoding; Hardware; Modulation; Noise; OFDM; Software; Channel coding; Cyclic Permutation Coding; DPSK modulation; G3-PLC; PRIME; Power Line Communications; Software Defined Radio; USRP;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Adaptive Science & Technology (ICAST), 2014 IEEE 6th International Conference on
Type :
conf
DOI :
10.1109/ICASTECH.2014.7068113
Filename :
7068113
Link To Document :
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