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Reducing Power Consumption with QoS Constraints in IEEE 802.16e Wireless Networks

机译:通过IEEE 802.16e无线网络中的QoS约束降低功耗

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Mobile Broadband Wireless Access (BWA) networks will offer in the forthcoming years multiple and differentiated services to users with high mobility requirements, connecting via portable or wearable devices which rely on the use of batteries by necessity. Since a relatively large fraction of energy is consumed by such devices for transmitting/receiving data over-the-air, mechanisms are needed to reduce power consumption, in order to increase the lifetime of devices, and hence, improve user''s satisfaction. The IEEE 802.16, which supports mobile BWA since its "eȁD; amendment in 2005, defined power saving functions at the Medium Access Control (MAC) layer, which are designed to be operated during open traffic sessions for the greatest energy consumption reduction. However, enabling power saving usually increases the transmission latency, which can negatively affect the Quality of Service (QoS) experienced by users. On the other hand, imposing stringent QoS requirements may limit the amount of energy that can be saved. In this paper, an extensive study of the mutual interaction between power saving mechanisms and QoS support is carried out in the context of the IEEE 802.16e. In particular, two types of delay-constrained applications with different requirements are considered, i.e., Web and Voice over IP (VoIP) for which the IEEE 802.16e standard specifies two different power saving classes. The performance is assessed via detailed packet-level simulation, with respect to several system parameters. To capture the relative contribution of all the factors on the energy- and QoS-related metrics, part of the evaluation is carried out by means of {2}^k cdot r! analysis.
机译:移动宽带无线接入(BWA)网络将在未来几年为具有高移动性要求的用户提供多种和差异化的服务,它们通过必要时依赖电池使用的便携式或可穿戴设备进行连接。由于用于通过空中发送/接收数据的这种设备消耗了相对较大的能量,因此需要一种机制来减少功耗,以增加设备的寿命,从而提高用户的满意度。 IEEE 802.16自2005年“eȁD;修正案”以来一直支持移动BWA,它在媒体访问控制(MAC)层上定义了节电功能,该功能旨在在开放流量会话期间运行,以最大程度地降低能耗。节能通常会增加传输延迟,这可能会对用户体验的服务质量(QoS)产生负面影响;另一方面,对QoS提出严格的要求可能会限制可节省的能量。在IEEE 802.16e的背景下,研究了节能机制与QoS支持之间的相互关系,特别是考虑了两种具有不同要求的延迟受限应用,即Web和IP语音(VoIP)。 IEEE 802.16e标准为此指定了两种不同的节电等级,并通过详细的数据包级仿真对几种系统参数进行了评估。米。为了捕获所有因素对与能量和QoS相关的度量的相对贡献,部分评估是通过{2} ^ k cdot r!进行的。分析。

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