Title :
Permutation coding with differential quinary phase shift keying for power line communication
Author :
Ogunyanda, K. ; Familua, A.D. ; Swart, T.G. ; Ferreira, H.C. ; Cheng, Lin
Author_Institution :
Dept. of Electr. & Electron. Eng. Sci., Univ. of Johannesburg, Johannesburg, South Africa
Abstract :
Permutation coding (PC) has been known to be effective in combating power line channel impairments, when used in concatenation with other channel coding schemes like convolutional or Reed Solomon (RS) codes, using FSK, PSK or DPSK as the modulator. We hereby report the development of a modified DPSK modulator, called differential quinary PSK (DQuiPSK), with only 5 constellations, to improve the performance of permutation coded DPSK-OFDM modulation for power line communication (PLC) purposes. This combination is, therefore, termed an RS-PC-DQuiPSK-OFDM scheme, with RS being used as an outer code. To implement this over power line, universal software radio peripherals, which are software defined radio hardware, originally designed for radio communications, were used together with narrowband coupling circuits, to interface with the power line. Simulations and practical implementation results show the strength and competitive performance of our scheme over the conventional convolutional coded D8PSK-OFDM scheme specified in the narrowband PLC standard.
Keywords :
OFDM modulation; Reed-Solomon codes; carrier transmission on power lines; convolutional codes; frequency shift keying; phase shift keying; DPSK-OFDM modulation; FSK; PC; PLC; RS codes; RS-PC-DQuiPSK-OFDM scheme; Reed Solomon codes; convolutional codes; differential quinary PSK; differential quinary phase shift keying; modified DPSK modulator; narrowband coupling circuits; permutation coding; power line channel impairments; power line communication; universal software radio peripherals; Bit error rate; Encoding; Frequency shift keying; OFDM; Phase shift keying; Software; Channel coding; OFDM modulation; PLC G3; PRIME; Permutation Coding; Power Line Communication; Quinary Phase Shift Keying; Software Defined Radio;
Conference_Titel :
Innovative Smart Grid Technologies Conference Europe (ISGT-Europe), 2014 IEEE PES
Conference_Location :
Istanbul
DOI :
10.1109/ISGTEurope.2014.7028891