标题: | 针对IEEE 802.11无线区域网路的二段式通话允诺控制演算法 A Two-tier Call Admission Control Algorithm in IEEE 802.11 WLAN |
作者: | 施云怀 Yuan-Hwai Shih 黄经尧 李大嵩 Ching-Yao Huang Ta-Sung Lee 电子研究所 |
关键字: | 无线区域网路;通话;允诺;控制;IEEE;802.11;WLAN;Call;Admission;Control |
公开日期: | 2004 |
摘要: | 近年来,使用无线宽频的人口与日俱增。因此,使各种资料传输(例:语音、数据或多媒体)在随时随地能维持一定的服务品质,变得更为重要。为因应这项需求,整合各种不同的无线通讯系统逐渐演变成现今科技发展的潮流。在众多整合技术中,IEEE 802.11无线区域网路被广泛地采用为整合的系统之一,它运用正交分频多工的调变方法,因而提供了很高的传输速率(6Mbps~54Mbps)。然而,IEEE 802.11无线区域网路能涵盖的范围非常有限,所以只设置在一些使用者较众多的地方,例如办公室、校园或机场;除此之外,IEEE 802.11无线区域网路存在最另人诟病的一点-当使用者稍有一点移动速率,系统的传输效能往往也跟着大幅地降低。在本论文中,吾人对IEEE 802.11无线区域网路的实体层及媒介存取层进行分析,并检视IEEE 802.11无线区域网的每一个模式,在不同的频道下所能达到的最大传输流量。最后,吾人亦利用马可夫炼导出连线速率自动调节演算法的数学模型,并结合了所有分析而得的结果,提出了一套“针对IEEE 802.11无线区域网路的二段式通话允诺控制演算法”。此演算法不仅能提高IEEE 802.11无线区域网路系统的整体传输流量,更能使每一个在此系统中的使用者,均能得到一定的服务品质。 As the number of wireless subscribers rapidly increases, the demands for guaranteeing the quality of services for all types of traffic (e.g. voice, data, and multimedia) anytime and anywhere become more critical. Therefore, the integration of multiple communication systems has passed into the developing trend of today’s technology. IEEE 802.11a/WLAN is one of the major wireless networks being widely adopted to be part of the integration. It achieves high data rates ranging from 6Mbps to 54Mbps by using orthogonal frequency division multiplexing (OFDM). However, the coverage of 802.11a is basically from 30m to 50m only. Thus WLAN will be set up only at hotspots such as offices, campuses and airports. Besides, IEEE 802.11a supports poor mobility thus the performance declines while the movement arises. In this thesis, the first tier call admission control (CAC) analyzes the performance of the IEEE 802.11a physical layer (PHY) under various channel conditions and determines if the station may request for the association. Besides, analytical mathematical models of link adaptation techniques, Auto Rate Fallback (ARF) and its extension, Adaptive ARF (AARF), are derived from the proposed Markov chains; and it provides essential information when designing the Buffer Time (BT) based call admission control algorithm in the second tier. In the end, the first and the second tier CAC algorithms are combined and an idea called “A Two-tier Call Admission Control Algorithm” is given to improve the overall system throughput and guarantee the quality of service of every single user in the WLAN system. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#GT009211603 http://hdl.handle.net/11536/66767 |
显示于类别: | Thesis |
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