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Techniques for exploring global time and achieving high-level QoS in multi-party videoconferencing systems.

机译:在多方视频会议系统中探索全球时间并实现高级QoS的技术。

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摘要

Even though steadily growing in both variety and functional complexity, one of the key issues in enabling high-level QoS in multi-party videoconferencing (MPVC) systems is still the accurate maintenance of the temporal relationship among Media Units (MUs) without the loss of real-time performance required by the human perceptions. Ubiquitous two-way videoconferencing systems focus on synchronizations for one or two streams among two sites while multiple streams delivered to multiple sites need to be synchronized in MPVC. In this dissertation, the principle of global-time-based coordination of distributed actions (TCoDA) is exploited to form a fundamental and promising approach for solving this problem. An innovative global time-based synchronization technique (TPT scheme) based on this principle is proposed to provide high-precision intra-stream, inter-stream, and inter-destination synchronizations for MPVC.; Reducing the amount of efforts for designing and implementing MPVC while synchronizing various kinds of distributed actions to provide high-level QoS in MPVC has become another major challenge in the distributed real-time multimedia software research community. While the conventional remote method invocation mechanism has been considered for a long time as the primary high-level programming model for facilitating interactions among real-time objects in distributed systems, a multicast support mechanism has been recognized in recent years as an attractive supplement, if not a favored approach, in many applications. One highly promising concrete formulation of a multicast mechanism and an associated programming model is the real-time multicast and memory-replication channel (RMMC). This dissertation presents an API set designed for facilitating easy use of RMMCs and a middleware subsystem devised to support RMMCs.; As a validation, an MPVC with high-level QoS support is constructed with the use of the Time-triggered Message-triggered Object (TMO) scheme and its tool-kit, including RMMC. Its performance over Wide Area Network (WAN) demonstrates that TCoDA, including the TPT scheme, is a fundamental and promising approach for distributed multimedia applications. It is also a demonstration that the TMO scheme and its tool-kit (including RMMC), which enable relatively easy high-level programming of manipulations of global time-stamps and timely processing of MUs, are significantly helpful in reducing the amount of efforts for designing and implementing complex distributed multimedia applications.
机译:尽管种类和功能的复杂性都在稳步增长,但在多方视频会议(MPVC)系统中实现高级QoS的关键问题之一仍然是如何准确维护媒体单元(MU)之间的时间关系。人类感知所需的实时性能。无处不在的双向视频会议系统专注于两个站点之间的一两个流的同步,而传递到多个站点的多个流需要在MPVC中进行同步。本文利用基于全局时间的分布式行动协调原则(TCoDA)来形成解决这一问题的基本方法。提出了一种基于该原理的创新的基于全球时间的同步技术(TPT方案),可为MPVC提供高精度的流内,流间和目标间同步。减少设计和实现MPVC的工作量,同时同步各种分布式操作以在MPVC中提供高级QoS,已经成为分布式实时多媒体软件研究社区的另一个主要挑战。尽管传统的远程方法调用机制作为促进分布式系统中实时对象之间交互的主要高级编程模型已被考虑了很长时间,但如果有条件的话,近年来,多播支持机制已被视为有吸引力的补充。在许多应用程序中不是首选的方法。实时组播和内存复制通道(RMMC)是组播机制和相关编程模型的一种非常有前途的具体表述。本文提出了一种旨在促进RMMC易于使用的API集以及一个旨在支持RMMC的中间件子系统。作为验证,使用时间触发消息触发对象(TMO)方案及其工具包(包括RMMC)构造了具有高级QoS支持的MPVC。它在广域网(WAN)上的性能表明,包括TPT方案在内的TCoDA是分布式多媒体应用的基本且很有前途的方法。这也表明,TMO方案及其工具包(包括RMMC)可以相对轻松地对全局时间戳的操作进行高级编程,并及时处理MU,这在很大程度上减少了针对以下方面的工作量:设计和实现复杂的分布式多媒体应用程序。

著录项

  • 作者

    Liu, Sheng.;

  • 作者单位

    University of California, Irvine.;

  • 授予单位 University of California, Irvine.;
  • 学科 Computer Science.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 104 p.
  • 总页数 104
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 自动化技术、计算机技术;
  • 关键词

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