English

On the Height Profile of Analog Error-Correcting Codes

Information Theory 2026-02-25 v1 math.IT

Abstract

In recent work, it has been shown that maintaining reliability in analog vector--matrix multipliers can be modeled as the following coding problem. Vectors in Rk\mathbb{R}^k are encoded into codewords of a linear [n,k,d][n,k,d] code CC over R\mathbb{R}. For prescribed positive reals δ<Δ\delta < \Delta, additive errors of magnitude at most δ\delta are tolerable and need no handling, yet outlying errors of magnitude greater than Δ\Delta are to be located or detected. The trade-off between the ratio Δ/δ\Delta/\delta and the number of outlying errors that can be handled is determined by the height profile of CC; as such, the height profile provides a finer description of the error handling capability of CC, compared to the minimum distance dd, which only determines the number of correctable errors. This work contains a further study of the notion of the height profile. Several characterizations of the height profile are presented, thereby yielding methods for computing it. The starting point is formulating this computation as an optimization problem that is solved by a set of linear programs. This, in turn, leads to a combinatorial characterization of the height profile as a maximum (or max--min) over a certain finite set of codewords of CC. Moreover, this characterization is shown to have a simple geometric interpretation when the columns of the generator matrix of CC all have the same L2L_2 norm. Through examples of several code families, it is demonstrated how the results herein can be used to compute the height profile explicitly.

Keywords

Cite

@article{arxiv.2602.20366,
  title  = {On the Height Profile of Analog Error-Correcting Codes},
  author = {Ron M. Roth and Ziyuan Zhu and Changcheng Yuan and Paul H. Siegel and Anxiao Jiang},
  journal= {arXiv preprint arXiv:2602.20366},
  year   = {2026}
}
R2 v1 2026-07-01T10:48:51.514Z