Dynamic Rate Adaptation for Improved Throughput and Delay in Wireless Network Coded Broadcast
Amy Fu, Parastoo Sadeghi, Muriel Medard

TL;DR
This paper analyzes delivery delay in wireless network coding, introduces a dynamic rate adaptation scheme based on delivery delay models, and demonstrates improved throughput and delay performance through simulations.
Contribution
It presents a new dynamic rate adaptation scheme that optimizes throughput and delay by leveraging delivery delay models and packet state analysis.
Findings
Zero state delivery approximates packet delivery behavior.
Coefficient choice significantly impacts delay performance.
Proposed scheme improves throughput-delay trade-off in simulations.
Abstract
In this paper we provide theoretical and simulation-based study of the delivery delay performance of a number of existing throughput optimal coding schemes and use the results to design a new dynamic rate adaptation scheme that achieves improved overall throughput-delay performance. Under a baseline rate control scheme, the receivers' delay performance is examined. Based on their Markov states, the knowledge difference between the sender and receiver, three distinct methods for packet delivery are identified: zero state, leader state and coefficient-based delivery. We provide analyses of each of these and show that, in many cases, zero state delivery alone presents a tractable approximation of the expected packet delivery behaviour. Interestingly, while coefficient-based delivery has so far been treated as a secondary effect in the literature, we find that the choice of coefficients…
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Taxonomy
TopicsCooperative Communication and Network Coding · Advanced Wireless Network Optimization · Advanced MIMO Systems Optimization
