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Joint Adaptive Rate and Scheduling for Unicasting Video Streams in Cellular Wireless Networks

机译:蜂窝无线网络中单播视频流的联合自适应速率和调度

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We develop and study adaptive rate scheduling mechanisms over cellular wireless networks, as used for the unicast provision of video streams to client mobiles at variable quality of experience (QoE) levels. Under service type I, mobile users receive video streams at a QoE level that is not lower than a specified value. In addition, mobile users that experience sufficiently high communications channel quality levels may be provided video streams at higher video quality levels. Under service type II, mobile clients receive their video streams at QoE levels that are based on their recorded signal to noise and interference levels. Resource allocations among mobiles are, however, subjected to absolute and proportional fairness objectives. We employ a proxy video manager and resource controller that is located at (or associated with) the base station node. The manager intercepts a channel quality indicator message reported by a mobile client, using it to determine the QoE level at which a requested video stream will be provided. It then selects the proper source and channel encoding schemes to be used for producing and transmitting a compressed version of the stream. To regulate inter-cell signal interference, we examine the joint employment of a number of different spectral-reuse and fractional frequency reuse (FFR) scheduling schemes. To illustrate the use of our models to configure system parameters, we consider a performance metric that incorporates a will-to-pay utility function. We develop analytical techniques for the modeling, analyzing, and designing of such systems. We confirm the precision of these models through the conduct of simulation analyses. Also, we show that, under certain system configurations, FFR-based schemes can lead to substantial enhancement of the system's performance behavior.
机译:我们开发和研究通过蜂窝无线网络的自适应速率调度机制,用于以可变的体验质量(QoE)级别向客户端移动设备单向提供视频流。在服务类型I下,移动用户以不低于指定值的QoE级别接收视频流。另外,可以以更高的视频质量等级向视频流提供经历足够高的通信信道质量等级的移动用户。在服务类型II下,移动客户端以QoE级别接收视频流,该级别基于其记录的信噪比和干扰级别。但是,移动台之间的资源分配要遵循绝对和比例公平目标。我们采用了位于基站节点(或与其关联)的代理视频管理器和资源控制器。管理器拦截由移动客户端报告的频道质量指示符消息,使用该消息来确定将提供所请求的视频流的QoE级别。然后,它选择适当的源和通道编码方案,以用于生成和传输流的压缩版本。为了规范小区间信号干扰,我们研究了多种不同频谱复用和分数频率复用(FFR)调度方案的联合使用。为了说明如何使用我们的模型来配置系统参数,我们考虑一种性能指标,该指标包含了将要付费的实用程序功能。我们为此类系统的建模,分析和设计开发分析技术。通过仿真分析,我们确认了这些模型的精度。此外,我们显示出,在某些系统配置下,基于FFR的方案可以导致系统性能行为的显着增强。

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