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A QOS SCHEME TO ADDRESS COMMUNICATION LATENCY ISSUES FOR CRITICAL NETWORK FLOWS IN BEST-EFFORT NETWORKS USING MOBILE AGENTS

机译:一种QoS方案,用于解决使用移动代理的最佳工作网络中关键网络流的通信延迟问题

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Flows can be mission critical; missed deadlines could result in grave consequences in systems such as hospital, military, automotive safety, and air-traffic control. It could be essential for a user to view essential information in a timely manner to make a critical decision of utmost importance. However, due to the present congestive nature of the internet, this could not be done in a timely manner. In order to ensure that such a flow meets its goal in a timely manner, there must be a means to monitor and improve its quality of service within the network. This paper introduces a quality of service (QoS) scheme, using agents, that is scalable, congestion avoiding and controlling, network performance monitoring, congestion forecasting, diagnosing, and resource allocating and enforcing scheme aimed at providing end-to-end communication latency and jitter for these flows in a scalable, proactive and reactive manner. Unlike previous schemes, it does not do any QoS negotiation and renegotiation between the agents; thereby, not adding on to the overhead of providing QoS to these critical flows in terms of latency. It does this by combining quality of service monitoring, detection and prediction with explicit window adaptation techniques as resource allocation techniques. It also introduces a rescheduling scheme for non-critical flows within the links that share bandwidth with these critical flows. The scheme aim to create "lanes" large enough for the critical flows to flow through the soon-to-be or already congested link, thereby reducing the communication latency and jitter for these flows.
机译:流动可能是关键任务;错过的截止日期可能导致医院,军事,汽车安全和空中交通管制等系统的严重后果。用户可能需要及时查看基本信息,以制定最重要的决定。然而,由于互联网的目前充血性质,这不能及时完成。为了确保这样的流动及时符合其目标,必须有一种方法来监控和提高网络内的服务质量。本文介绍了一种服务质量(QoS)方案,使用代理商,即可扩展,拥塞避免和控制,网络性能监测,拥塞预测,诊断和资源分配和实施方案,旨在提供端到端通信延迟和这些流动的抖动以可扩展,积极的和反应性的方式。与之前的计划不同,代理商之间没有任何QoS谈判和重新选择;因此,在延迟方面,不添加到这些临界流的QoS的开销。它通过将具有显式窗口自适应技术的服务监控,检测和预测的质量组合为资源分配技术来实现这一点。它还介绍了在与这些临界流共享带宽的链路内的非关键流程的重新安排方案。该方案旨在创建“车道”足够大,以便临界流过很快或已经拥塞的链接,从而减少了这些流程的通信延迟和抖动。

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