Variations on a theme by Schalkwijk and Kailath
arXiv:0812.2709 · doi:10.1109/TIT.2009.2034896
Abstract
Schalkwijk and Kailath (1966) developed a class of block codes for Gaussian channels with ideal feedback for which the probability of decoding error decreases as a second-order exponent in block length for rates below capacity. This well-known but surprising result is explained and simply derived here in terms of a result by Elias (1956) concerning the minimum mean-square distortion achievable in transmitting a single Gaussian random variable over multiple uses of the same Gaussian channel. A simple modification of the Schalkwijk-Kailath scheme is then shown to have an error probability that decreases with an exponential order which is linearly increasing with block length. In the infinite bandwidth limit, this scheme produces zero error probability using bounded expected energy at all rates below capacity. A lower bound on error probability for the finite bandwidth case is then derived in which the error probability decreases with an exponential order which is linearly increasing in block length at the same rate as the upper bound.
18 Pages, 4 figures (added reference)
References in corpus (2)
Cited by in corpus (14)
- Error-and-Erasure Decoding for Block Codes with Feedback
- Feedback Communication Systems with Limitations on Incremental Redundancy
- LightCode: Light Analytical and Neural Codes for Channels with Feedback
- Insufficiency of Linear-Feedback Schemes In Gaussian Broadcast Channels with Common Message
- A Feedback Information-Theoretic Transmission Scheme (FITTS) for Modeling Trajectory Variability in Aimed Movements
- Noisy Feedback and Loss Unlimited Private Communication
- Error Exponents for the Gaussian Channel with Active Noisy Feedback
- Energy-Distortion Tradeoff for the Gaussian Broadcast Channel with Feedback
- Deepcode and Modulo-SK are Designed for Different Settings
- Linear Coding for AWGN channels with Noisy Output Feedback via Dynamic Programming
- Chernoff Bounds for Analysis of Rate-Compatible Sphere-Packing with Numerous Transmissions
- Variable-Length Coding with Feedback: Finite-Length Codewords and Periodic Decoding
- Achievable Error Exponents in the Gaussian Channel with Rate-Limited Feedback
- On Sampling Continuous-Time AWGN Channels