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PHY/MAC Enhancements and QoS Mechanisms for Very High Throughput WLANs: A Survey

机译:高吞吐量WLAN的PHY / MAC增强和QoS机制:一项调查

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Wireless local area networking has experienced tremendous growth in the last years with the proliferation of IEEE 802.11 devices in order to improve wireless technology. The first generation of high throughput networks known as IEEE 802.11n was developed in 2009 to reach 130 Mbps. Furthermore, to enhance the throughput, two new amendments for IEEE 802.11 are under developments which are IEEE 802.11ad and IEEE 802.11ac. The first one aims to reach 1Gbps with supporting multi-user access techniques. The second amendment aims to enable up to 7Gbp with the possibility of transmitting in the 60GHz band that provides the opportunity for much wider band channels. Another WLAN is already finalized called IEEE 802.11aa in the goal to provide a reliable multicast transport for video streaming. In this survey, we examine the dif-ferent PHY and MAC enhancements introduced by all these WLAN specifications. Particularly, we focus on the characteristics of each amendment as well as the main MAC mechanisms that lead to improve the network performance. Based on the fact that all recent MAC mechanisms aim to increase QoS guarantee for real time multimedia applications, we have studied different schemes and mechanisms that provide QoS satisfaction for real time multimedia flows transport over WLANs. Namely, we investigate the scheduling mechanisms, the call admission control algorithms, and the anticipated MAC enhancement which are proposed for WLANs networks to support real time applications with QoS satisfaction.
机译:随着IEEE 802.11设备的发展,无线局域网在过去几年经历了巨大的发展,以改善无线技术。第一代高吞吐量网络(称为IEEE 802.11n)于2009年开发,达到130 Mbps。此外,为了提高吞吐量,正在开发针对IEEE 802.11的两个新修正,即IEEE 802.11ad和IEEE 802.11ac。第一个目标是通过支持多用户访问技术达到1Gbps。第二项修正案旨在实现高达7Gbp的传输速率,并有可能在60GHz频段进行传输,从而为更宽频带的信道提供了机会。另一个WLAN已被最终确定为IEEE 802.11aa,目的是为视频流提供可靠的多播传输。在本次调查中,我们研究了所有这些WLAN规范引入的不同PHY和MAC增强功能。特别是,我们关注于每个修订的特征以及导致网络性能提高的主要MAC机制。基于所有最近的MAC机制旨在提高实时多媒体应用的QoS保证的事实,我们研究了为WLAN上的实时多媒体流传输提供QoS满意的不同方案和机制。即,我们研究了为WLAN网络支持QoS满意的实时应用而提出的调度机制,呼叫准入控制算法和预期的MAC增强。

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