A Throughput Performance for a Point-to-Multipoint Gigabit WLAN System on 60 GHz Millimeter Wave

Yukimasa Nagai, Mari Ochiai, N. Shimizu, A. Shibuya
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引用次数: 4

Abstract

Increasing demand on the broadband wireless communication over Gigabits has focused renewed attention on 60 GHz millimeter wave. We developed a novel Point-to-Multipoint (P2MP) Gigabit WLAN System on 60 GHz millimeter wave. The proposed system employed wide angle beams antenna overcomes the usability of the conventional system, covers larger areas. Maximum transmission rate was designed to be 1.2 Gigabit/sec. Orthogonal frequency division multiplex (OFDM) using 1024 points FFT and convolutional code were implemented with PHY layer of the WLAN equipments. Superframe for multiple beams and frame aggregation for high throughput were designed for MAC layer. All control channels for downlink such as broadcast, frame control and access feedback were aggregated to reduce overhead in addition to aggregation of data frame. Evaluated throughput using proposed frame aggregation was confirmed to be more than 800 Mbit/sec with developed prototype in the case of aggregation size of 10 t1500byte.
基于60ghz毫米波的点对多点千兆无线局域网系统的吞吐量性能研究
随着千兆宽带无线通信需求的增加,60千兆赫毫米波再次成为人们关注的焦点。我们在60ghz毫米波上开发了一种新颖的点对多点(P2MP)千兆无线局域网系统。该系统采用了广角波束天线,克服了传统系统的可用性,覆盖面积更大。最大传输速率设计为1.2千兆位/秒。利用无线局域网设备的物理层实现了1024点FFT和卷积码的正交频分复用(OFDM)。在MAC层设计了多波束的超帧和高吞吐量的帧聚合。除了对数据帧进行聚合外,还对下行链路的广播、帧控制、接入反馈等控制通道进行了聚合,以减少开销。在聚合大小为10t1500byte的情况下,使用所提出的帧聚合的评估吞吐量在已开发的原型下超过800mbit /sec。
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