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Users and Services in Intelligent Networks

机译:智能网络中的用户和服务

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We present a vision of an Intelligent Network in which users dynamically indicate their requests for services, and formulate needs in terms of Quality of Service (QoS) and price. Users can also monitor on-line the extent to which their requests are being satisfied. In turn the services will dynamically try to satisfy the user as best as they can, and inform the user of the level at which the requests are being satisfied, and at what cost. The network will provide guidelines and constraints to users and services, to avoid that they impede each others' progress. This intelligent and sensible dialogue between users, services and the network can proceed constantly based on mutual observation, network and user self-observation, and on-line adaptive and locally distributed feedback control which proceeds at the same speed as the traffic flows and events being controlled. We review issues such as network "situational awareness", self-organisation, and structure, and relate these concepts to the ongoing research on autonomic communication systems. We relate the search for services in the network to the question of QoS and routing. We examine the need to dynamically protect the networked system from denial of service (DoS) attacks, and propose an approch to DoS defence which uses the detection of violations of QoS constraints and the automatic throttling or dropping of traffic to protect critacl nodes. We also discuss how this vision of an Intelligent Network can benefit from techniques that have been experimented in the Cognitive Packet Network (CPN) test-bed at Imperial College, thanks to "smart packets" and reinforcement learning, which offers routing that is dynamically modified using on on-line sensing and monitoring, based on users' QoS needs and overall network objectives.
机译:我们提出了一种智能网络的愿景,其中用户可以动态指示其对服务的要求,并根据服务质量(QoS)和价格制定需求。用户还可以在线监视其请求得到满足的程度。反过来,服务将动态地尝试尽最大可能使用户满意,并告知用户满足请求的级别以及所需的费用。该网络将为用户和服务提供指导和约束,以避免它们阻碍彼此的进步。用户,服务和网络之间的这种智能,明智的对话可以基于相互观察,网络和用户的自我观察以及在线自适应和本地分布的反馈控制(与流量和事件发生的速度相同)而不断进行。受控。我们审查诸如网络“情境意识”,自我组织和结构等问题,并将这些概念与正在进行的有关自主通信系统的研究联系起来。我们将对网络中服务的搜索与QoS和路由问题相关联。我们研究了动态保护网络系统免遭拒绝服务(DoS)攻击的需求,并提出了一种DoS防御方法,该方法使用对QoS约束违例的检测以及自动节流或丢弃流量来保护关键节点。我们还将讨论智能网络的愿景如何受益于帝国理工学院认知分组网络(CPN)测试平台上试验过的技术,这要归功于“智能分组”和强化学习,该技术提供了动态修改的路由根据用户的QoS需求和总体网络目标,使用在线感应和监视。

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