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  4. Toward WebTransport Support in HTTP Adaptive Streaming
 
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2024
Conference Paper
Title

Toward WebTransport Support in HTTP Adaptive Streaming

Abstract
Recent years have observed a drastic improvement in video streaming. However, there are still non-trivial open issues that need to be solved, including latency and throughput estimation. In this paper, we present latency improvements to video streaming using WebTransport, a new transport Application Programming Interface (API) for the web platform that enables low-latency, bidirectional communication between web applications and servers. The API is built on top of QUIC, a modern transport protocol that provides low latency, secure, and reliable communication over the internet. By taking advantage of WebTransport’s server push, we present how the latency (e.g., the startup time) of a stream can be decreased compared to HTTP. Furthermore, we propose an efficient way to estimate throughput by leveraging WebTransport, especially for Common Media Application Format (CMAF) low-latency live streaming use cases. The comparisons are conducted with the current version of one of the most popular Dynamic HTTP Adaptive Streaming players, namely dash.js. The goal of these experiments is to identify use cases, where WebTransport could enhance existing dash.js functionality. The experimental results show the outperformance of WebTransport with an improvement of 28% in startup time. Our proposed throughput estimation in WebTransport also presents its ability to detect changes in throughput faster than the conventional technique with acceptable accuracy.
Author(s)
Nguyen, Minh  orcid-logo
Fraunhofer-Institut für Offene Kommunikationssysteme FOKUS  
Nys, Philip
Fraunhofer-Institut für Offene Kommunikationssysteme FOKUS  
Pham, Stefan  orcid-logo
Fraunhofer-Institut für Offene Kommunikationssysteme FOKUS  
Silhavy, Daniel  
Fraunhofer-Institut für Offene Kommunikationssysteme FOKUS  
Arbanowski, Stefan  
Fraunhofer-Institut für Offene Kommunikationssysteme FOKUS  
Steglich, Stephan  
Fraunhofer-Institut für Offene Kommunikationssysteme FOKUS  
Mainwork
IEEE Tenth International Conference on Communications and Electronics, ICCE 2024  
Conference
International Conference on Communications and Electronics 2024  
DOI
10.1109/ICCE62051.2024.10634652
Language
English
Fraunhofer-Institut für Offene Kommunikationssysteme FOKUS  
Keyword(s)
  • QUIC

  • WebTransport

  • HTTP Adaptive Streaming

  • dash.js

  • DASH

  • Media over QUIC

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