IEEE 802.16网络中最佳努力应用的电源管理性能评估

G. Anastasi, Andrea Bacioccola, C. Cicconetti, L. Lenzini, E. Mingozzi, C. Vallati
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引用次数: 8

摘要

减少能源消耗是移动宽带无线接入(BWA)网络的一个关键方面,该网络预计将由电池供电的设备(如移动电话和掌上电脑)填充。由于这个原因,IEEE 802.16e是该领域的领跑者之一,它指定了一套基站(BS)和移动站(ms)使用的节能机制,以减少后者使用无线接口的时间。这些机制分为三类,分别针对不同类型的应用程序设计。本文主要研究一类,它符合最优流量的典型要求。对于类型I,具有省电功能的MS在睡眠和收听期间交替进行。每次收听时间结束,睡眠时间就会增加2倍,直到睡眠窗口的最大值。由于该标准没有提供设置上述参数的指导方针,这些参数在设置节能类时由BS和ms协商,因此我们通过模拟来评估它们对性能的影响,包括特定于应用程序的度量,即取决于流量类型的延迟或吞吐量,以及节省的能源量。
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Performance evaluation of power management for best effort applications in IEEE 802.16 networks
Reduced energy consumption is a crucial aspect of mobile Broadband Wireless Access (BWA) networks, which are expected to be populated by battery-operated devices, like mobile phones and palmtops. For this reason the IEEE 802.16e, which is one of the front-runner competitors in this field, specifies a set of power saving mechanisms to be employed by the Base Station (BS) and Mobile Stations (MSs) to reduce the amount of time the latter spend with the wireless interface on. These mechanisms are classified into three class types, which are designed for different types of applications. In this paper we focus on class type I, which fits the typical requirements of best-effort traffic. With class type I, an MS with power saving enabled alternates between sleep and listening periods. The duration of the sleep periods increases by a factor 2 each time listening period ends, up to a maximum sleep window size. Since the standard does not provide guidelines for setting the above parameters, which are negotiated between the BS and MSs when setting up a power saving class, we evaluate via simulation their impact on the performance, in terms of both application-specific metric, i.e. delay or throughput depending on the type of traffic, and the amount of energy saved.
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