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Applying Opportunistic Medium Access and Multiuser MIMO Techniques in Multi-channel Multi-radio WLANs

机译:机会性媒体访问和多用户MIMO技术在多信道多无线电WLAN中的应用

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Opportunistic medium access (i.e., multiuser diversity) and MIMO techniques (i.e., multiple-antenna techniques) are two effective ways to achieve a substantial throughput gain in a multiuser wireless system. In this paper, we propose a medium access control (MAC) protocol with opportunistic medium access and multiuser MIMO techniques (MAC-OMA/MM) in Multi-channel Multi-radio Wireless Local Area Networks (WLANs) to explore the utility of the joint design of these two techniques for the challenging MAC design. Specifically, in addition to utilizing multiple channels simultaneously and assigning multiple radio transceivers dynamically, multiuser MIMO technique is applied on each frequency channel to enhance the data rates. The key ideas of MAC-OMA/MM can be summarized as follows. By utilizing ATIM (Ad-hoc Traffic Indication Message) windows as in IEEE 802.11 power saving mechanism (PSM), user selection and channel negotiation are conducted between the access point (AP) and multiple users via ATIM messages on a common channel. Multiuser diversity are employed to opportunistically schedule among multiple candidate users to optimize data transmission in each negotiation. During data exchange, on each frequency channel, the AP is capable to communicate with two distinct users simultaneously both for the downlink and uplink data transmissions with the help of multiuser MIMO technique, which creates an extra dimension in spatial domain to further leverage the effect of multiuser diversity and multi-channel gains. Another contribution of this paper is to provide an analytical model to characterize the impact of our protocol on the system throughput and energy efficiency performance. Extensive simulations have been conducted and the results demonstrate that our protocol outperforms existing multi-channel MAC protocols with only minimal additional overhead and minor enhancements to the IEEE 802.11 PSM.
机译:机会性媒体访问(即,多用户分集)和MIMO技术(即,多天线技术)是在多用户无线系统中实现相当大的吞吐量增益的两种有效方式。在本文中,我们提出了一种在多信道多无线电无线局域网(WLAN)中使用机会性媒体访问和多用户MIMO技术(MAC-OMA / MM)的媒体访问控制(MAC)协议,以探索联合的实用性设计这两种技术来应对具有挑战性的MAC设计。具体而言,除了同时利用多个信道并动态分配多个无线电收发器外,在每个频率信道上还应用了多用户MIMO技术来提高数据速率。 MAC-OMA / MM的关键思想可以总结如下。通过像IEEE 802.11节能机制(PSM)中那样利用ATIM(临时流量指示消息)窗口,可以通过公共信道上的ATIM消息在接入点(AP)和多个用户之间进行用户选择和信道协商。利用多用户分集在多个候选用户之间进行机会调度,以优化每次协商中的数据传输。在数据交换过程中,借助多用户MIMO技术,AP能够在每个频道上同时与两个不同的用户通信,以进行下行链路和上行链路数据传输,这在空间域中创造了一个额外的维度,可以进一步利用多用户分集和多渠道收益。本文的另一个贡献是提供了一个分析模型来表征我们的协议对系统吞吐量和能效性能的影响。进行了广泛的仿真,结果表明我们的协议在仅将附加开销降至最低的同时,对IEEE 802.11 PSM进行了较小的增强,从而优于现有的多通道MAC协议。

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