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Throughput Enhancement with ACK/NACK Mechanism in Short-Range Millimeter-Wave Communication Systems

机译:短距离毫米波通信系统中采用ACK / NACK机制的吞吐量增强

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摘要

The 60GHz millimeter-wave (mmWave) wireless technology is a focus of increasing attention, since its ability to transmit more than Gbps PHY data rate makes it suitable for high-speed, short-range applications such as peer-to-peer synchronization and kiosk terminals. In the case of short-range communication with a range of several tens of centimeters, only terminals present in this communication range will be affect and communication is considered to be on a one-to-one basis. In one-to-one communication, a simpler and more efficient access mechanism is preferable. The ability of current CSMA/CA based MAC, for example MAC of IEEE 802.11 WLAN systems, to achieve high throughput is limited by the low MAC efficiency caused by high signal exchange overhead, such as interframe space (IFS) and acknowledgement. This paper proposes an ACK/NACK mechanism that enhances the throughput in short-range one-to-one communication. The ACK/NACK mechanism uses Negative ACK (NACK) as the acknowledgement policy to reduce the overhead of ACK and the transmitter switches the required acknowledgement policy to ACK based on a switchover threshold. It solves a problem arising from NACK, namely, that NACK has no mechanism for keeping alive. We evaluate the throughput of the ACK/NACK mechanism by both theoretical analysis and computer simulation. The proposed ACK/NACK mechanism is implemented in 65 nm CMOS process (BBIC); we connect this BBIC to a 60 GHz RFIC and exchange frames wirelessly. In this experiment, it is verified that the ACK/NACK mechanism enhances throughput.
机译:60GHz毫米波(mmWave)无线技术是越来越受到关注的焦点,因为它能够传输超过Gbps PHY数据速率的能力使其适用于诸如点对点同步和信息亭等高速,短距离应用终端。在几十厘米范围内的短距离通信中,仅此通信范围内的终端会受到影响,并且通信被认为是一对一的。在一对一通信中,更简单,更有效的访问机制是可取的。当前的基于CSMA / CA的MAC(例如IEEE 802.11 WLAN系统的MAC)实现高吞吐量的能力受到高信号交换开销(如帧间空间(IFS)和确认)导致的低MAC效率的限制。本文提出了一种ACK / NACK机制,可以提高短距离一对一通信的吞吐量。 ACK / NACK机制使用否定ACK(NACK)作为确认策略,以减少ACK的开销,并且发送器根据切换阈值将所需的确认策略切换为ACK。它解决了由NACK引起的问题,即NACK没有保持生存的机制。我们通过理论分析和计算机仿真来评估ACK / NACK机制的吞吐量。所提出的ACK / NACK机制是在65 nm CMOS工艺(BBIC)中实现的;我们将此BBIC连接到60 GHz RFIC并无线交换帧。在该实验中,证实了ACK / NACK机制可以提高吞吐量。

著录项

  • 来源
    《IEICE Transactions on Communications》 |2013年第8期|2162-2172|共11页
  • 作者单位

    Corporate Research & Development Center, Toshiba Corporation, Kawasaki-shi, 212-8582 Japan;

    Corporate Research & Development Center, Toshiba Corporation, Kawasaki-shi, 212-8582 Japan;

    Corporate Research & Development Center, Toshiba Corporation, Kawasaki-shi, 212-8582 Japan;

    Corporate Research & Development Center, Toshiba Corporation, Kawasaki-shi, 212-8582 Japan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    60 GHz millimeter-wave (mmWave); ACK/NACK;

    机译:60 GHz毫米波(mmWave);确认/否定;

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