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首页> 外文期刊>IEEE Journal on Selected Areas in Communications >Intelligent content aware services in 3G wireless networks
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Intelligent content aware services in 3G wireless networks

机译:3G无线网络中的智能内容感知服务

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We address the problem of optimizing the delivery of multimedia services with different quality-of-service (QoS) requirements to mobile users. We assume that the network provides two distinct classes of service to which users may subscribe: Premium, or Economy. Subscribers to the Premium service pay more for their connections but receive a higher level of quality measured by a set of parameters such as call blocking probability, coding rate, and format of the multimedia services. By optimizing the delivery of the multimedia services, we mean that the network guarantees that all users receive their agreed-upon contractual level of quality, while maximizing the links' throughput, avoiding congestion, and maintaining the QoS requirements for each type of media (e.g., video, voice and data). Our proposed solution is based upon utilizing genetic algorithms to solve a multiobjective optimization function that adaptively selects the downloading bit-rate for each type of traffic flow subject to the constraints of the optimization function. A traffic flow is an abstract of aggregate traffic of the same type of media (e.g., voice, video, or data) that is downloaded to a group of users who share some common attribute such as the same class of service. The optimization function is adaptive in the sense that the selected downloading bit-rates are time-dependant according to the dynamics of the links' traffic-loads and users' requests. It is implemented on every output port of each node in the network. The function is used to control a filter that changes the coding rate of each media-type and, if necessary, performs transcoding of one, or more, media-types (i.e., video, voice, or data). Simulation results show significant improvement in terms of increasing the number of admitted users, while maintaining the QoS requirements, as well as target call blocking rates. An interesting result to report is that the performance improvement of the system (measured by the gain in the number of admitted users at a certain utilization factor) is not simply bounded by the maximum available link throughput. It is, rather, limited by the additional revenue gained by admitting more users. The increase in the revenue saturates at a certain offered traffic-load. Hence, it is not worth it,-n from a service provider perspective, to admit additional users above this traffic load despite the fact that the filtering algorithm results indicate otherwise.
机译:我们解决了优化向移动用户提供具有不同服务质量(QoS)要求的多媒体服务的问题。我们假定网络提供用户可以订阅的两种不同的服务类别:高级或经济。高级服务的订户为他们的连接支付更高的费用,但是通过一组参数(例如呼叫阻塞概率,编码率和多媒体服务的格式)来衡量,他们获得了更高的质量。通过优化多媒体服务的交付,我们的意思是网络保证所有用户都收到他们商定的合同质量级别,同时最大化链接的吞吐量,避免拥塞并维持每种媒体类型(例如, ,视频,语音和数据)。我们提出的解决方案基于利用遗传算法解决多目标优化函数的问题,该函数根据优化函数的约束为每种类型的交通流量自适应选择下载比特率。流量流是下载到共享相同属性(例如同一类服务)的一组用户的相同类型媒体(例如语音,视频或数据)的聚合流量的摘要。在某种意义上说,优化功能是自适应的,根据链路流量负载和用户请求的动态,所选的下载比特率与时间有关。它在网络中每个节点的每个输出端口上实现。该功能用于控制滤波器,该滤波器更改每种媒体类型的编码率,并在必要时执行一种或多种媒体类型(即视频,语音或数据)的转码。仿真结果表明,在增加接纳用户数量的同时,还保持了QoS要求以及目标呼叫阻塞率,这是一项显着的改进。报告一个有趣的结果是,系统的性能改进(通过在一定利用率下的允许用户数量的增加来衡量)并不仅限于最大可用链路吞吐量。相反,它受限于通过接纳更多用户而获得的额外收入。在提供一定流量后,收入的增长会达到饱和。因此,尽管过滤算法结果表明并非如此,但从服务提供商的角度来看,不容许在此流量负载之上接纳其他用户。

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