2014 International Conference on Advances in Computing, Communications and Informatics (ICACCI) 2014
DOI: 10.1109/icacci.2014.6968562
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Performance analysis of LT codes and BCH codes in RF and FSO Wireless Sensor Networks

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Cited by 7 publications
(5 citation statements)
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References 9 publications
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“…Channel coding Modulation [238] Nakagami-m OSTBC IM/DD OOK [256] Malaga Repetition coding SIK [304], [306] Gamma-Gamma FEC RCPC OOK [233] Generalized gamma OSTBC PAM, OSSK [308], [309] Gamma-Gamma Convolution OOK, PPM [313] Gamma-Gamma Convolution Spatial modulation [314] Gamma-Gamma BICM, Convolution M 2 -QAM [315] Gamma-Gamma Convolution 16-QAM [316], [331] Log-normal, K-distribution LDPC OOK [317] Gamma-Gamma Convolution BPSK [318] Log-normal Convolution Q-ary PPM [319], [320] Gamma-Gamma FEC RCPC BPSK [321] Gamma-Gamma STTC IM/DD OOK [322] Non-fading RC OOK [329] Gamma-Gamma Alamouti DPSK [332] Gamma-Gamma BMST PPM [333]- [335] Gamma-Gamma RC OOK [336] Gamma-Gamma BCHB PPM [337] Gamma-Gamma RC PAM [338] Gamma-Gamma OOC PPM [339] Gamma-Gamma PLNC BPSK [340] Gamma-Gamma IMC BPSK, 8-PPM [341] Gamma-Gamma RC BPSK [342] Generalized gamma Alamouti, space-time 4-PAM [294] Gamma-Gamma OSTBC BPSK [343] Exponentiated Weibull LDPC 16-PSK, 16-QAM [344] Gamma-Gamma OCDMA BPSK [345] Gamma-Gamma Reed-Solomon OOK, QAM-MPPM [346] Gamma-Gamma Polar OOK [347] Gamma-Gamma Turbo OOK [348] Gamma-Gamma LT, BCHB BPSK [349] Non-fading Reed-Solomon OOK [350] Non-fading Reed-Solomon CSK …”
Section: References Channel Modelmentioning
confidence: 99%
“…Channel coding Modulation [238] Nakagami-m OSTBC IM/DD OOK [256] Malaga Repetition coding SIK [304], [306] Gamma-Gamma FEC RCPC OOK [233] Generalized gamma OSTBC PAM, OSSK [308], [309] Gamma-Gamma Convolution OOK, PPM [313] Gamma-Gamma Convolution Spatial modulation [314] Gamma-Gamma BICM, Convolution M 2 -QAM [315] Gamma-Gamma Convolution 16-QAM [316], [331] Log-normal, K-distribution LDPC OOK [317] Gamma-Gamma Convolution BPSK [318] Log-normal Convolution Q-ary PPM [319], [320] Gamma-Gamma FEC RCPC BPSK [321] Gamma-Gamma STTC IM/DD OOK [322] Non-fading RC OOK [329] Gamma-Gamma Alamouti DPSK [332] Gamma-Gamma BMST PPM [333]- [335] Gamma-Gamma RC OOK [336] Gamma-Gamma BCHB PPM [337] Gamma-Gamma RC PAM [338] Gamma-Gamma OOC PPM [339] Gamma-Gamma PLNC BPSK [340] Gamma-Gamma IMC BPSK, 8-PPM [341] Gamma-Gamma RC BPSK [342] Generalized gamma Alamouti, space-time 4-PAM [294] Gamma-Gamma OSTBC BPSK [343] Exponentiated Weibull LDPC 16-PSK, 16-QAM [344] Gamma-Gamma OCDMA BPSK [345] Gamma-Gamma Reed-Solomon OOK, QAM-MPPM [346] Gamma-Gamma Polar OOK [347] Gamma-Gamma Turbo OOK [348] Gamma-Gamma LT, BCHB BPSK [349] Non-fading Reed-Solomon OOK [350] Non-fading Reed-Solomon CSK …”
Section: References Channel Modelmentioning
confidence: 99%
“…RS codes in high-speed, long-distance transmission are suitable for correcting burst errors and random bit errors (Yu, Meng, et al, 2004). BCH codes correct multiple bit errors in a codeword (Nayak, Anuj 2014).…”
Section: Background and Motivationmentioning
confidence: 99%
“…Nayak presents the performance analysis (energy per bit against distance and overhead versus probability of error) of LT and BCH codes in RF and FSO communication link [82]. The paper presents decoding power consumption versus distance for BCH and Luby Transform (LT) codes under RF channel (considering AWGN and LOS) and FSO channel (considering different Gamma-Gamma distributions for turbulences).…”
Section: Fec For Wsnmentioning
confidence: 99%