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An End to End Adaptable Architecture for Streaming Media over IP Networks

机译:IP网络上流媒体的端到端自适应体系结构

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Wireless networks differ in bandwidth, size and access costs each requiring a set of protocol functions to enable devices to communicate efficiently. Portable multimedia devices such as PDA's and laptops will also vary greatly however all these devices will require optimal multimedia delivery. A traditional method is for sources to limit their transmission rates to accommodate lower bandwidth links, even though high-bandwidth connectivity is available to many participants. This method similar to others does not provide optimum throughput to heterogeneous clients due to its quest for a common denominator bandwidth. In addition, due to the divergence of users and applications, traditional protocol stacks are frequently enriched with additional functionality such as transport protocol functionality, synchronization and presentation coding which can lead to a performance bottleneck due to the insufficient processing power and memory of portable devices. Micro-protocols attempt to eradicate this bottleneck by optimising the protocol stack to the functionality that is actually required by the application. A side effect of this is that it allows a device such as a PDA to offer protocol functions, which would not normally be available due to its memory constraints achievable by downloading necessary micro-protocols for new environments and discarding previous micro-protocols. Multicast media groups overcome the heterogeneous client problem where clients subscribe to different quality of services in accordance with resource availability and move between groups according to bandwidth availability. Chameleon is 100% Java middleware for multimedia streaming to heterogeneous mobile clients, which allows the dynamic configuration of protocols with respect to application requirements and available network resources. We evaluate the dynamic reconfigurability of the middleware in order to demonstrate runtime adaptation. We especially concentrate on the primary quality transformation technique (PQT) of the middleware which enables clients to subscribe to media groups in accordance with available resources and network capacity.
机译:无线网络的带宽,大小和访问成本各不相同,每个网络都需要一组协议功能才能使设备有效通信。诸如PDA和笔记本电脑之类的便携式多媒体设备也将相差很大,但是所有这些设备都将需要最佳的多媒体交付。传统的方法是,即使许多参与者都可以使用高带宽连接,也要限制源的传输速率以适应较低带宽的链路。这种方法与其他方法类似,由于它寻求公共分母带宽,因此无法为异构客户端提供最佳吞吐量。另外,由于用户和应用的多样性,传统协议栈经常被附加诸如传输协议功能,同步和表示编码之类的附加功能,这由于处理能力和便携式设备的存储不足而导致性能瓶颈。微协议试图通过优化协议栈以消除应用程序实际需要的功能来消除此瓶颈。这样做的副作用是,它允许诸如PDA之类的设备提供协议功能,由于其内存限制,通常无法使用该协议功能,因为可以通过为新环境下载必要的微协议并丢弃先前的微协议来实现。组播媒体组克服了异构客户端问题,即客户端根据资源可用性订阅不同的服务质量,并根据带宽可用性在组之间移动。 Chameleon是用于多媒体流到异构移动客户端的100%Java中间件,它允许根据应用程序要求和可用网络资源动态配置协议。我们评估了中间件的动态可重新配置性,以演示运行时的适应性。我们特别关注中间件的主要质量转换技术(PQT),该技术使客户端能够根据可用资源和网络容量订阅媒体组。

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