Title
APP and PHY in Harmony: A framework enabling flexible physical layer processing to address application requirements
Abstract
Mobile data traffic, particularly mobile video, grows at an unprecedented pace. Despite recent advances at the physical layer, today's wireless network infrastructure cannot keep up with this growth. This is partially due to the missing flexibility to adapt the physical layer continuously to best support both application level as well as network requirements. In this paper we show how to harness the flexibility of advanced physical layers in practice. We designed and implemented a research platform that provides a flexible application-centric physical layer for Android smartphones using software-defined radios (SDRs) as radio interfaces. Our solution allows applications to define flows and apply per-flow settings that are mapped into distinct physical layer settings. As a proof-of-concept and for testbed evaluation, we implemented our system together with a mobile video streaming application. The latter uses a Motion-JPEG based lightweight scalable video codec (SVC) to generate incremental data flows. We show that our system maximizes video quality at the receiver's side, while keeping the energy consumption at the transmitter at a minimum. Our solution demonstrates that jointly optimizing network traffic and application quality is feasible in practice using a flexible physical layer processing approach.
Year
DOI
Venue
2015
10.1109/NetSys.2015.7089076
NetSys
Keywords
Field
DocType
motion jpeg,mobile computing,physical layer,sdr,software defined radios,phy,video quality,app,mobile communication,wireless communication,software radio
Wireless network,Computer architecture,Android (operating system),Computer science,Testbed,Computer network,Physical layer,PHY,Mobile broadband,Video quality,Energy consumption
Conference
Citations 
PageRank 
References 
2
0.72
12
Authors
6
Name
Order
Citations
PageRank
Matthias Schulz111112.74
Denny Stohr2387.07
Stefan Wilk37010.70
Benedikt Rudolph420.72
Wolfgang Effelsberg51945511.41
Matthias Hollick675097.29