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A packet eligible time calculation mechanism for providing temporal QoS for multicast routing

机译:用于为多播路由提供时间QoS的数据包符合条件的时间计算机制

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In this paper, we propose a packet eligible time calculation mechanism and its associated information update method to provide temporal QoS to multicast services, in terms of delay bound coupled with inter-message delay jitter bound and/or bounded inter-destination delay jitter bound. We assume the availability of a multicast tree on which the delay between a source and any destination falls within the end-to-end delay bound. We then exploit the idea of artificially delaying transmission of datapackets until their eligible times [5], and model each router as a regulator followed by a packet scheduler. A data packet is not eligible to be scheduled until the current time is greater than or equal to its eligible time.For each temporal QoS required, we derive the appropriate packet eligible times. We also devise an information update method to collect/update in a decentralized manner the parameters needed in the calculation of packet eligible times. With all theparameters available, an intermediate router can calculate packet eligible times and the upper bound on the buffers needed in order to fulfill the QoS. Finally, we validate the proposed mechanism in terms of the probability of locating feasible multicasttrees and message overheads, and scalability with event-driven simulations.
机译:在本文中,我们提出了一种分组符合条件的时间计算机制及其相关信息更新方法,以便在与消息间延迟抖动绑定和/或有界间地延迟抖动绑定和/或有界间延迟抖动绑定的延迟绑定方面为多播服务提供时间QoS。我们假设多播树的可用性,其中源和任何目的地之间的延迟落在端到端延迟绑定内。然后,我们利用人为延迟数据丢失的思想,直到符合条件的时间[5],并将每个路由器模拟作为调节器,后跟分组调度程序。数据包不符合要求计划,直到当前时间大于或等于其符合条件的时间。需要每个时间QoS,我们派生了适当的数据包符合条件的时间。我们还将信息更新方法设计为以分散的方式收集/更新,以计算数据包符合条件的时间所需的参数。通过可用的所有参数,中间路由器可以计算数据包符合条件的次数以及符合QoS所需的缓冲区上的上限。最后,我们在定位可行多播和消息开销的概率方面验证所提出的机制,以及具有事件驱动模拟的可扩展性。

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