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A family of upper bounds to error probabilities of coded systems on the additive white Gaussian noise channel was recently proposed by Divsalar 131.
A family of upper bounds to error probabilities of coded systems on the additive white Gaussian noise channel was recently proposed by Divsalar.
These bounds are valid for transmission over the additive white Gaussian noise channel, and require only the knowledge of the weight spectrum of the code words.
Missing: AWGN | Show results with:AWGN
Abstract: New upper bounds to error probabilities of coded systems such as turbo codes on the additive white Gaussian noise and fading channels were obtained.
Missing: AWGN | Show results with:AWGN
New upper bounds to error probabilities of coded systems such as turbo codes on the additive white Gaussian noise and fading channels were obtained.
Sep 28, 1999 · A family of upper bounds to error probabilities of coded systems on the additive white Gaussian noise channel was recently proposed by Divsalar ...
After illustrating these bounds, we extend them to fading channels. Contrary to the union bound, our bounds maintain their effectiveness below the signal-to- ...
Apr 4, 2022 · For Spinal codes over the AWGN channel, the optimal decoding algorithm is maximum likelihood (ML) decoding. In ML decoding, the decoder adopts ...
Apr 27, 2023 · In this paper, we derive explicit tight upper bounds on the error probability of Spinal codes under maximum-likelihood (ML) decoding and perfect ...
Abstract — We present a method to find Bonferroni-type upper and lower bounds for the end-to-end frame error rate and bit error rate of a general ...