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Redundancy concepts to increase transmission reliability in wireless industrial LANs

机译:冗余概念可提高无线工业局域网中的传输可靠性

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摘要

Wireless LANs are an attractive networking technology for industrial applications. A major obstacle toward the fulfillment of hard real-time requirements is the error-prone behavior of wireless channels. A common approach to increase the probability of a message being transmitted successfully before a prescribed deadline is to use feedback from the receiver and subsequent retransmissions (automatic repeat request-ARQ-protocols). In this paper, three modifications to an ARQ protocol are investigated. As one of these modifications a specific transmit diversity scheme, called antenna redundancy, is introduced. The other modifications are error-correcting codes and the transmission of multiple copies of the same packet. In antenna redundancy the base station/access point has several antennas. The base station transmits on one antenna at a time, but whenever a retransmission is needed, the base station switches to another antenna. The relative benefits of using FEC versus adding antennas versus sending multiple copies are investigated under different error conditions. One important result is that for independent Gilbert-Elliot channels between the base station antennas and the wireless station the antenna redundancy scheme effectively decreases the probability of missing a deadline, in a numerical example approximately an order of magnitude per additional antenna can be observed. As a second benefit, antenna redundancy decreases the number of transmission trials needed to transmit a message successfully, thus saving bandwidth.
机译:无线局域网是用于工业应用的一种有吸引力的联网技术。满足硬实时要求的主要障碍是无线通道容易出错的行为。一种增加消息在规定的截止日期之前成功发送的可能性的常用方法是使用来自接收者的反馈和随后的重传(自动重发请求-ARQ协议)。在本文中,研究了对ARQ协议的三种修改。作为这些修改之一,引入了一种称为天线冗余的特定发射分集方案。其他修改是纠错码和同一数据包的多个副本的传输。在天线冗余中,基站/接入点具有多个天线。基站一次在一个天线上发射,但是每当需要重传时,基站就会切换到另一根天线。在不同的错误条件下,研究了使用FEC相对于添加天线而不是发送多个副本的相对优势。一个重要的结果是,对于基站天线和无线站之间的独立吉尔伯特-艾略特信道,天线冗余方案有效地降低了错过最后期限的可能性,在数值示例中,每增加一个天线大约可以看到一个数量级。第二个好处是,天线冗余减少了成功发送消息所需的发送尝试次数,从而节省了带宽。

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