<?xml version="1.0" encoding="UTF-8"?>
<reference anchor="I-D.trammell-quic-spin" target="https://datatracker.ietf.org/doc/html/draft-trammell-quic-spin-03">
   <front>
      <title>Adding Explicit Passive Measurability of Two-Way Latency to the QUIC Transport Protocol</title>
      <author initials="B." surname="Trammell" fullname="Brian Trammell">
         <organization>ETH Zurich</organization>
      </author>
      <author initials="P." surname="De Vaere" fullname="Piet De Vaere">
         <organization>ETH Zurich</organization>
      </author>
      <author initials="R." surname="Even" fullname="Roni Even">
         <organization>Huawei</organization>
      </author>
      <author initials="G." surname="Fioccola" fullname="Giuseppe Fioccola">
         <organization>Telecom Italia</organization>
      </author>
      <author initials="T." surname="Fossati" fullname="Thomas Fossati">
         <organization>Nokia</organization>
      </author>
      <author initials="L. M." surname="Ihlar" fullname="Marcus Ihlar">
         <organization>Ericsson</organization>
      </author>
      <author initials="A. C." surname="Morton" fullname="Al Morton">
         <organization>AT&amp;T Labs</organization>
      </author>
      <author initials="E." surname="Stephan" fullname="Emile Stephan">
         <organization>Orange</organization>
      </author>
      <date month="May" day="14" year="2018" />
      <abstract>
	 <t>   This document describes the addition of a &quot;spin bit&quot;, intended for
   explicit measurability of end-to-end RTT, to the QUIC transport
   protocol.  It proposes a detailed mechanism for the spin bit, as well
   as an additional mechanism, called the valid edge counter, to
   increase the fidelity of the latency signal in less than ideal
   network conditions.  It describes how to use the latency spin signal
   to measure end-to-end latency, discusses corner cases and their
   workarounds in the measurement, describes experimental evaluation of
   the mechanism done to date, and examines the utility and privacy
   implications of the spin bit.

	 </t>
      </abstract>
   </front>
   <seriesInfo name="Internet-Draft" value="draft-trammell-quic-spin-03" />
   
</reference>
