A joint beamforming based SDMA protocol for IEEE 802.11n downlink

Cheng Guo, Liqiang Zhao, H Zhao, Whai-En Chen
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引用次数: 3

Abstract

To support space division multiple access (SDMA) in the IEEE 802.11n downlink, a joint beamforming based MAC protocol, J-MAC is presented in this paper. An access point (AP) follows J-MAC, which employs multiple array antennas, and user equipments (UEs) follow the IEEE 802.11x standard which employ omni-directional MIMO antennas. J-MAC maintains full compatibility with 802.11x, and UEs do not change any more. In J-MAC, firstly, the AP achieves the weight vector for the array antenna-based beamforming, and updates it periodically. Secondly, before transmitting any data-frame, the AP achieves the weight vector for the MIMO-based beamforming, which should be updated in each transmission. Finally, after getting the joint beamforming, the AP transmits its data-frames to multiple UEs simultaneously. Simulation results show that J-MAC can support the joint beamforming effectively and provide much higher network throughput, lower delay, jitter and packet-loss-rate than DCF does.
基于联合波束形成的SDMA协议,用于IEEE 802.11n下行链路
为了支持IEEE 802.11n下行链路上的空分多址(SDMA),本文提出了一种基于联合波束形成的MAC协议J-MAC。接入点(AP)遵循J-MAC,采用多阵列天线,用户设备(ue)遵循IEEE 802.11x标准,采用全向MIMO天线。J-MAC完全兼容802.11x,终端不再改变。在J-MAC中,首先,AP得到基于阵列天线的波束形成的权向量,并定期更新。其次,在传输任何数据帧之前,AP获得基于mimo的波束形成的权向量,并在每次传输中更新该权向量。最后,在获得联合波束形成后,AP将其数据帧同时发送到多个终端。仿真结果表明,J-MAC可以有效地支持联合波束形成,并提供比DCF更高的网络吞吐量、更低的延迟、抖动和丢包率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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