Modeling and Simulation of a Video-on-Demand Network Implementing Adaptive Source-Level Control and Relative Rate Marking Flow Control for the Available Bit Rate Service

The Available Bit Rate (ABR) service class for the Asynchronous Transfer Mode (ATM) protocol was originally designed to manage data traffic. ABR flow control makes no guarantees concerning cell transfer delay or cell delay variation. A closed-loop feedback mechanism is used for traffic management....

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Main Author: Taylor, Elvin Lattis Jr.
Other Authors: Electrical and Computer Engineering
Format: Others
Published: Virginia Tech 2014
Subjects:
Online Access:http://hdl.handle.net/10919/31097
http://scholar.lib.vt.edu/theses/available/etd-01598-55245/
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spelling ndltd-VTETD-oai-vtechworks.lib.vt.edu-10919-310972020-09-29T05:44:05Z Modeling and Simulation of a Video-on-Demand Network Implementing Adaptive Source-Level Control and Relative Rate Marking Flow Control for the Available Bit Rate Service Taylor, Elvin Lattis Jr. Electrical and Computer Engineering Midkiff, Scott F. Parry, Charles J. Davis, Nathaniel J. IV Traffic Management Video-on-Demand High-speed Networking The Available Bit Rate (ABR) service class for the Asynchronous Transfer Mode (ATM) protocol was originally designed to manage data traffic. ABR flow control makes no guarantees concerning cell transfer delay or cell delay variation. A closed-loop feedback mechanism is used for traffic management. To use this class of service for video transport, the video source will accept feedback from the network and adapt its source rate based on this status information. The objective of this research is to assess the ability of the ATM ABR service class to deliver Moving Picture Experts Group version 1 (MPEG-1) video. Three approaches to source-level control are compared: (i) arbitrary loss or no control method, (ii) selective discard of MPEG B-pictures, and (iii) selective discard of MPEG B- and P-pictures. Performance is evaluated based on end-to-end delay, congested queue occupancy levels, network utilization, and jitter. A description of the investigation, assumptions, limitations, and results of the simulation study are included. Master of Science 2014-03-14T20:31:14Z 2014-03-14T20:31:14Z 1997-12-18 1997-12-18 1998-01-16 1998-01-16 Thesis etd-01598-55245 http://hdl.handle.net/10919/31097 http://scholar.lib.vt.edu/theses/available/etd-01598-55245/ etd.pdf In Copyright http://rightsstatements.org/vocab/InC/1.0/ application/pdf Virginia Tech
collection NDLTD
format Others
sources NDLTD
topic Traffic Management
Video-on-Demand
High-speed Networking
spellingShingle Traffic Management
Video-on-Demand
High-speed Networking
Taylor, Elvin Lattis Jr.
Modeling and Simulation of a Video-on-Demand Network Implementing Adaptive Source-Level Control and Relative Rate Marking Flow Control for the Available Bit Rate Service
description The Available Bit Rate (ABR) service class for the Asynchronous Transfer Mode (ATM) protocol was originally designed to manage data traffic. ABR flow control makes no guarantees concerning cell transfer delay or cell delay variation. A closed-loop feedback mechanism is used for traffic management. To use this class of service for video transport, the video source will accept feedback from the network and adapt its source rate based on this status information. The objective of this research is to assess the ability of the ATM ABR service class to deliver Moving Picture Experts Group version 1 (MPEG-1) video. Three approaches to source-level control are compared: (i) arbitrary loss or no control method, (ii) selective discard of MPEG B-pictures, and (iii) selective discard of MPEG B- and P-pictures. Performance is evaluated based on end-to-end delay, congested queue occupancy levels, network utilization, and jitter. A description of the investigation, assumptions, limitations, and results of the simulation study are included. === Master of Science
author2 Electrical and Computer Engineering
author_facet Electrical and Computer Engineering
Taylor, Elvin Lattis Jr.
author Taylor, Elvin Lattis Jr.
author_sort Taylor, Elvin Lattis Jr.
title Modeling and Simulation of a Video-on-Demand Network Implementing Adaptive Source-Level Control and Relative Rate Marking Flow Control for the Available Bit Rate Service
title_short Modeling and Simulation of a Video-on-Demand Network Implementing Adaptive Source-Level Control and Relative Rate Marking Flow Control for the Available Bit Rate Service
title_full Modeling and Simulation of a Video-on-Demand Network Implementing Adaptive Source-Level Control and Relative Rate Marking Flow Control for the Available Bit Rate Service
title_fullStr Modeling and Simulation of a Video-on-Demand Network Implementing Adaptive Source-Level Control and Relative Rate Marking Flow Control for the Available Bit Rate Service
title_full_unstemmed Modeling and Simulation of a Video-on-Demand Network Implementing Adaptive Source-Level Control and Relative Rate Marking Flow Control for the Available Bit Rate Service
title_sort modeling and simulation of a video-on-demand network implementing adaptive source-level control and relative rate marking flow control for the available bit rate service
publisher Virginia Tech
publishDate 2014
url http://hdl.handle.net/10919/31097
http://scholar.lib.vt.edu/theses/available/etd-01598-55245/
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