...
首页> 外文期刊>Eurasip Journal on Wireless Communications and Networking >SAMU: design and implementation of frequency selectivity-aware multi-user MIMO for WLANs
【24h】

SAMU: design and implementation of frequency selectivity-aware multi-user MIMO for WLANs

机译:SAMU:WLAN的频率选择性感知多用户MIMO的设计和实现

获取原文
获取原文并翻译 | 示例
           

摘要

The traffic demand of wireless networks is expected to increase 1000-fold over the next decade. In anticipation of such increasing data demand for dense networks with a large number of stations, IEEE 802.11ax has introduced key technologies for capacity improvement including Orthogonal Frequency-Division Multiple Access (OFDMA), multi-user multi-input multi-output (MU-MIMO), and greater bandwidth. However, IEEE 802.11ax has yet to fully define a specific scheduling framework, on which the throughput improvement of networks significantly depends. Even within a 20 MHz of bandwidth, users experience heterogeneous channel orthogonality characteristics across sub-carriers, which prevents access points (APs) from achieving the ideal multi-user gain. Moreover, frequency selectivity increases as bandwidth scales and correspondingly severely deteriorates multi-user MIMO performance. In this work, we develop a novel channel adaptation scheme, named selectivity-aware multi-user MIMO (SAMU), to combat the issue of frequency selectivity and support coexistence among users in the network by jointly assigning subsets of sub-carriers to selected users and implementing downlink MU-MIMO. To do so, we first investigate the channel characteristics of an indoor environment. We then consider the frequency selectivity of current and emerging WiFi channel bandwidths to optimize multi-user MIMO by dividing the occupied sub-carrier resources into equally sized sub-channels according to the level of frequency selectivity. In our design, each sub-channel is allocated according to the largest bandwidth that can be considered frequency-flat, and an optimal subset of users is chosen to serve in each sub-channel according to spatial orthogonality. As a result, we support more simultaneous users than current 802.11 designs and achieve a significant performance improvement for all users in the network. Additionally, we propose a selectivity-aware high efficiency (SA-HE) mode, which is based on and fully backward compatible with the existing IEEE 802.11ax standard. Finally, over emulated and real indoor channels, we show that SAMU can achieve as much as 84.8% throughput improvement compared to existing multi-user MIMO schemes in IEEE 802.11ax.
机译:预计无线网络的交通需求将在未来十年增加1000倍。在预期具有大量站的密集​​网络的增加数据需求,IEEE 802.11ax引入了包括能力改进的关键技术,包括正交频分多址(OFDMA),多用户多输入多输出(MU- MIMO),更大的带宽。但是,IEEE 802.11ax尚未完全定义特定的调度框架,其中网络的吞吐量改进显着取决于。即使在20MHz的带宽范围内,用户跨越分载波体验过的异构信道正交特征,这可以防止接入点(AP)实现理想的多用户增益。此外,频率选择性随着带宽尺度而增加,并且相应地严重降低了多用户MIMO性能。在这项工作中,我们开发了一种新颖的频道适应方案,名为选择性感知的多用户MIMO(SAMU),以对抗频率选择性问题,并通过将子载波的子集共同分配给所选用户来对抗网络中的用户之间的共存并实施下行链路MU-MIMO。为此,我们首先调查室内环境的渠道特征。然后,我们考虑电流和新兴的WiFi通道带宽的频率选择性,通过将占用的子载波资源划分为根据频率选择性的电平将占用的子载波资源分成同等大小的子信道来优化多用户MIMO。在我们的设计中,根据可以被视为频率平整的最大带宽分配每个子通道,并且选择根据空间正交性的每个子信道中的最佳用户子集。因此,我们支持比当前802.11的更同时的用户,并为网络中的所有用户提供显着的性能改进。此外,我们提出了一种选择性意识的高效率(SA-HE)模式,其基于和完全向后兼容现有的IEEE 802.11AX标准。最后,与IEEE 802.11AX中的现有多用户MIMO方案相比,我们展示了SAMU可以获得多达84.8%的吞吐量改进。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号