Fine-grained QoE Enhancement using Semantic Tables
draft-li-spring-fine-grained-qoe-enhancement-00
| Document | Type |
Expired Internet-Draft
(individual)
Expired & archived
|
|
|---|---|---|---|
| Authors | Zhiqiang Li , Zongpeng Du , Wei Cheng , Junjie Wang , Guoying Zhang | ||
| Last updated | 2026-09-01 (Latest revision 2026-02-28) | ||
| RFC stream | (None) | ||
| Intended RFC status | (None) | ||
| Formats | |||
| Stream | Stream state | (No stream defined) | |
| Consensus boilerplate | Unknown | ||
| RFC Editor Note | (None) | ||
| IESG | IESG state | Expired | |
| Telechat date | (None) | ||
| Responsible AD | (None) | ||
| Send notices to | (None) |
This Internet-Draft is no longer active. A copy of the expired Internet-Draft is available in these formats:
Abstract
This document describes a fine-grained Quality of Experience (QoE) enhancement mechanism using semantic tables deployed at network forwarding nodes. The mechanism enables application-level SLA (Service Level Agreement) guarantees by carrying address indices and high-frequency-changing information in packets while maintaining low- frequency-changing semantic information at network nodes. This approach overcomes the limitations of traditional Application-aware Networking (APN) solutions, including excessive packet header overhead. The mechanism supports collaborative optimization across network, computing, and energy dimensions, and can be deployed over MPLS, IPv4/v6, SRv6, and other protocol data planes.
Authors
Zhiqiang Li
Zongpeng Du
Wei Cheng
Junjie Wang
Guoying Zhang
(Note: The e-mail addresses provided for the authors of this Internet-Draft may no longer be valid.)