On the Stochastic Analysis of Random Linear Streaming Codes in Multi-Hop Relay Networks
Kai Huang, Xinyu Xie, Chunpeng Chen, Wenjie Guan, Xiaoran Wang, Jinbei Zhang

TL;DR
This paper analyzes the stochastic error performance of large-field-size Random Linear Streaming Codes in multi-hop relay networks with i.i.d. packet erasures, extending existing deterministic models to probabilistic settings.
Contribution
It introduces a novel framework for characterizing error events in multi-hop networks, generalizes analysis to arbitrary hops, and provides explicit error probability expressions.
Findings
Error event characterization for two-hop networks
Explicit average error probability formulas
Validation through simulations comparing existing codes
Abstract
In this paper, we aim to explore the stochastic performance limit of large-field-size Random Linear Streaming Codes (RLSCs) in multi-hop relay networks. In our model, a source transmits a sequence of streaming messages to a destination through multiple relays subject to a delay constraint. Most previous research focused on deterministic adversarial channel which introduces only restricted types of erasure patterns, and aimed to design the optimal capacity-achieving codes. In this paper, we focus on stochastic channel where each hop is subject to i.i.d. packet erasures, and carry out stochastic analysis on the error probability of multi-hop RLSCs. Our contributions are three-folds. Firstly, the error event of large-field-size RLSCs is characterized in two-hop relay network with a novel framework, which features quantification of information flowing through each node in the network. Due…
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Taxonomy
TopicsCooperative Communication and Network Coding · Mobile Ad Hoc Networks · Wireless Networks and Protocols
