Increased network efficiency for variable rate video streams in an Integrated Services Packet Network environment /

adapted over time to match the needs of each particular video

Bibliographic Details
Main Author: Schroeder, Charles Grant, 1970-
Format: Thesis eBook
Language:English
Published: [Place of publication not identified] : [publisher not identified] ; 1996.
Subjects:
Online Access:Link to OAKTrust copy
Description
Summary:adapted over time to match the needs of each particular video
applications like videoconferencing, several resource
built into a basic video-conferencing tool. While the
constant output rate. This rate can then make use of a high
describes a mechanism by which variable bit-rate, real-time
developed which dynamically adjusts the quality of the video
Due to the needs of real-time, bandwidth intensive
encoding using a prediction mechanism to obtain a nearly
for sending variable bit-rate over resource reservations are
is buffered so that any errors in the predictive video
is used to control the buffer delay so that none of the data
multi-layered version of the popular CU-SeeMe video encoder
Packet Network (ISPN) are currently being developed. These
packets exceed an allowable real-time delay maximum for
percentage of the reserved rate. The controlled coder output
Predictive/Adaptive Rate Control (PARC) mechanism is
quality adjustment can be smoothed. Network delay feedback
quantity of network resources for their exclusive use. Most
reservation infrastructures like the Integrated Services
reservation with a high level of reservation utilization. A
resulting image quality remains high, increases in link
schemes provide applications with a way to reserve a fixed
sequence. This research is implemented and tested using a
shown.
useful video-conferencing. Finally, the reservation rate is
utilization as high as 108.8% over current techniques used
video encoders, however, are variable rate. This research
video streams can be sent over a fixed rate resource
Item Description:"Major subject: Electrical Engineering".
Vita.
Physical Description:x, 96 leaves : illustrations ; 28 cm.
Also available online.
Issued also on microfiche from Lange Micrographics.
Bibliography:Includes bibliographical references.