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A cross-layer quality-oriented energy-efficient scheme for multimedia delivery in wireless local area networks

机译:面向无线局域网中多媒体传输的跨层质量导向能效方案

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摘要

Wireless communication technologies, although emerged only a few decades ago, have grown fast in both popularity and technical maturity. As a result, mobile devices such as Personal Digital Assistants (PDA) or smart phones equipped with embedded wireless cards have seen remarkable growth in popularity and are quickly becoming one of the most widely used communication tools. This is mainly determined by the flexibility, convenience and relatively low costs associated with these devices and wireless communications. Multimedia applications have become by far one of the most popular applications among mobile users. However this type of application has very high bandwidth requirements, seriously restricting the usage of portable devices. Moreover, the wireless technology involves increased energy consumption and consequently puts huge pressure on the limited battery capacity which presents many design challenges in the context of battery powered devices. As a consequence, power management has raised awareness in both research and industrial communities and huge efforts have been invested into energy conservation techniques and strategies deployed within different components of the mobile devices.ududOur research presented in this thesis focuses on energy efficient data transmission in wireless local networks, and mainly contributes in the following aspects:udud1. Static STELA, which is a Medium Access Control (MAC) layer solution that adapts the sleep/wakeup state schedule of the radio transceiver according to the bursty nature of data traffic and real time observation of data packets in terms of arrival time. The algorithm involves three phases– slow start phase, exponential increase phase, and linear increase phase. The initiation and termination of each phase is self-adapted to real time traffic and user configuration. It is designed to provide either maximum energy efficiency or best Quality of Service (QoS) according to user preference.udud2. Dynamic STELA, which is a MAC layer solution deployed on the mobile devices and provides balanced performance between energy efficiency and QoS. Dynamic STELA consists of the three phase algorithm used in static STELA, and additionally employs a traffic modeling algorithm to analyze historical traffic data and estimate the arrival time of the next burst. Dynamic STELA achieves energy saving through intelligent and adaptive increase of Wireless Network Interface Card (WNIC) sleeping interval in the second and the third phase and at the same time guarantees delivery performance through optimal WNIC waking timing before the estimated arrival of new data burst.udud3. Q-PASTE, which is a quality-oriented cross-layer solution with two components employed at different network layers, designed for multimedia content delivery. First component, the Packet/ApplicaTion manager (PAT) is deployed at the application layer of both service gateway and client host. The gateway level PAT utilizes fast start, as a widely supported technique for multimedia content delivery, to achieve high QoS and shapes traffic into bursts to reduce the wireless transceiver’s duty cycle. Additionally, gateway-side PAT informs client host the starting and ending time of fast start to assist parameter tuning. The client-side PAT monitors each active session and informs the MAC layer about their traffic-related behavior. The second component, dynamic STELA, deployed at MAC layer, adaptively adjusts the sleep/wake-up behavior of mobile device wireless interfaces in order to reduce energy consumption while also maintaining high Quality of Service (QoS) levels.udud4. A comprehensive survey on energy efficient standards and some of the most important state-of-the-art energy saving technologies is also provided as part of the work.
机译:尽管无线通信技术仅在几十年前才出现,但在普及度和技术成熟度方面都发展迅速。结果,诸如配备有嵌入式无线卡的个人数字助理(PDA)或智能手机之类的移动设备的普及度已显着增长,并迅速成为最广泛使用的通信工具之一。这主要取决于与这些设备和无线通信相关的灵活性,便利性和相对较低的成本。迄今为止,多媒体应用已成为移动用户中最流行的应用之一。然而,这种类型的应用具有非常高的带宽要求,从而严重限制了便携式设备的使用。此外,无线技术涉及增加的能量消耗,因此对有限的电池容量施加了巨大压力,这在电池供电设备的背景下提出了许多设计挑战。因此,电源管理已引起研究界和工业界的广泛关注,并且已投入大量精力来研究在移动设备的不同组件中部署的节能技术和策略。 ud ud我们在本文中进行的研究集中在节能数据上无线局域网中的数据传输,主要有以下方面的贡献: ud ud1。静态STELA是一种媒体访问控制(MAC)层解决方案,可根据数据流量的突发性和到达时间的实时观察来调整无线电收发器的睡眠/唤醒状态时间表。该算法涉及三个阶段-缓慢启动阶段,指数增加阶段和线性增加阶段。每个阶段的启动和终止都适应于实时流量和用户配置。它旨在根据用户的喜好提供最大的能源效率或最佳的服务质量(QoS)。 ud ud2。动态STELA是部署在移动设备上的MAC层解决方案,并在能效和QoS之间提供了平衡的性能。动态STELA由静态STELA中使用的三相算法组成,并另外采用流量建模算法来分析历史流量数据并估计下一个突发的到达时间。动态STELA通过智能和自适应地增加第二和第三阶段中的无线网络接口卡(WNIC)睡眠间隔来实现节能,同时通过在估计新数据突发到达之前的最佳WNIC唤醒时间来保证传输性能。 ud ud3。 Q-PASTE是一种面向质量的跨层解决方案,具有在不同网络层使用的两个组件,旨在用于多媒体内容交付。第一个组件,数据包/应用程序管理器(PAT)部署在服务网关和客户端主机的应用程序层。网关级PAT利用快速启动作为广泛支持的多媒体内容传输技术,以实现高QoS,并将流量整形为突发,以降低无线收发器的占空比。此外,网关端PAT会通知客户端主机快速启动的开始和结束时间,以帮助进行参数调整。客户端PAT监视每个活动会话,并将其与流量相关的行为通知MAC层。第二个组件是动态STELA,部署在MAC层,可自适应地调整移动设备无线接口的睡眠/唤醒行为,以减少能耗,同时还保持高服务质量(QoS)级别。作为工作的一部分,还对能源效率标准和一些最重要的最新节能技术进行了全面调查。

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    Song Yang;

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  • 年度 2014
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