<?xml version="1.0" encoding="UTF-8"?>
<reference anchor="I-D.li-spring-fine-grained-qoe-enhancement" target="https://datatracker.ietf.org/doc/html/draft-li-spring-fine-grained-qoe-enhancement-00">
   <front>
      <title>Fine-grained QoE Enhancement using Semantic Tables</title>
      <author initials="Z." surname="Li" fullname="Zhiqiang Li">
         <organization>China Mobile</organization>
      </author>
      <author initials="Z." surname="Du" fullname="Zongpeng Du">
         <organization>China Mobile</organization>
      </author>
      <author initials="W." surname="Cheng" fullname="Wei Cheng">
         <organization>Centec Networks</organization>
      </author>
      <author initials="J." surname="Wang" fullname="Junjie Wang">
         <organization>Centec Networks</organization>
      </author>
      <author initials="G." surname="Zhang" fullname="Guoying Zhang">
         <organization>Centec Networks</organization>
      </author>
      <date month="February" day="28" year="2026" />
      <abstract>
	 <t>   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.

	 </t>
      </abstract>
   </front>
   <seriesInfo name="Internet-Draft" value="draft-li-spring-fine-grained-qoe-enhancement-00" />
   
</reference>
