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Performance of binary locked convolutional codes with non-transmittable codewords in flat and slow rayleigh-fading channel

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dc.creator Mrutu, Salehe I.
dc.creator Sam, Anael
dc.creator Mvungi, Nerey H.
dc.date 2021-05-25T10:20:42Z
dc.date 2021-05-25T10:20:42Z
dc.date 2014
dc.date.accessioned 2022-10-20T13:47:44Z
dc.date.available 2022-10-20T13:47:44Z
dc.identifier Mrutu, S. I., Sam, A., & Mvungi, N. H. (2014). Performance of Binary Locked Convolutional Codes with Non-Transmittable Codewords in Flat and Slow Rayleigh-Fading Channel. International Journal of Computer Applications, 106(7), 29-34
dc.identifier 0975 – 8887
dc.identifier DOI: https://doi.org/10.5120/18534-9744
dc.identifier http://hdl.handle.net/20.500.12661/3209
dc.identifier.uri http://hdl.handle.net/20.500.12661/3209
dc.description Abstract. Full-text article is available at: https://doi.org/10.5120/18534-9744
dc.description Communication over wireless media is vulnerable to distortion by noise. Therefore, the application of an error control mechanism is necessary to minimize the Bit Error Rate (BER). It is proposed to use locked binary convolutional code with Non-Transmittable codewords to enhance Viterbi Algorithm decoders; as one of the forward error correction mechanisms. The proposed enhancement empowers Viterbi algorithm decoders to reduce one of its inherent limitations of residual errors due to burst errors. This paper evaluates the performance of the locked (2, 1, 2) binary convolutional code with Non-Transmittable codewords enhancement technique over flat and slow Rayleigh Fading channel using a MATLAB software simulation. Simulation result shows 80.92 percent reduction of residual errors when 6 Non-Transmittable Codewords were applied to Viterbi Algorithm (VA) decoding. On the other hand, the technique lowers the encoder’s data transmission rate from 1/2 to 1/6.
dc.language en
dc.publisher Foundation of Computer Science
dc.subject Locked convolutional encoder
dc.subject Bust errors
dc.subject Residual errors
dc.subject Non Transmittable Codewords
dc.subject NTCs
dc.subject Viterbi algorithm decoding
dc.subject Rayleigh fading channel
dc.subject Wireless media
dc.title Performance of binary locked convolutional codes with non-transmittable codewords in flat and slow rayleigh-fading channel
dc.type Article


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