English

Rate-Optimal Streaming Codes Under an Extended Delay Profile for Three-Node Relay Networks With Burst Erasures

Information Theory 2025-11-11 v1 math.IT

Abstract

This paper investigates streaming codes for three-node relay networks under burst packet erasures with a delay constraint TT. In any sliding window of T+1T+1 consecutive packets, the source-to-relay and relay-to-destination channels may introduce burst erasures of lengths at most b1b_1 and b2b_2, respectively. Let u=max{b1,b2}u = \max\{b_1, b_2\} and v=min{b1,b2}v = \min\{b_1, b_2\}. Singhvi et al. proposed a construction achieving the optimal rate when u(Tuv)u\mid (T-u-v). In this paper, we present an extended delay profile method that attains the optimal rate under a relaxed constraint Tuv2uvTuvu\frac{T - u - v}{2u - v} \leq \left\lfloor \frac{T - u - v}{u} \right\rfloor and it strictly cover restriction u(Tuv)u\mid (T-u-v). %Furthermore, we demonstrate that the optimal rate for streaming codes is not achievable when 0<Tuv<v0< T-u-v<v under the convolutional code framework.

Keywords

Cite

@article{arxiv.2511.06882,
  title  = {Rate-Optimal Streaming Codes Under an Extended Delay Profile for Three-Node Relay Networks With Burst Erasures},
  author = {Zhipeng Li and Wenjie Ma},
  journal= {arXiv preprint arXiv:2511.06882},
  year   = {2025}
}
R2 v1 2026-07-01T07:29:14.337Z