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首页> 外文期刊>IEEE transactions on industrial informatics >Towards High-Performance Wireless Control: 10^-7 Packet Error Rate in Real Factory Environments
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Towards High-Performance Wireless Control: 10^-7 Packet Error Rate in Real Factory Environments

机译:朝高性能无线控制:实际环境中的10 ^ -7包错误率

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摘要

To meet the extremely low latency constraints of industrial wireless control in critical applications, the wireless high-performance scheme (WirelessHP) has been introduced as a promising solution. The proposed design showed great improvements in terms of latency, but its performance in terms of reliability have not been fully tested yet. While traditional wireless systems achieve high reliability through packet retransmissions, this would impair the latency, and an approach based on channel coding is preferable in industrial applications. In this paper, a set of packet error rate (PER) tests is performed by applying concatenated Reed Solomon and convolutional codes to the WirelessHP physical layer, using a demonstrator based on a universal software radio peripheral platform. The effectiveness of channel coding to achieve 10(-7) level PER without retransmissions is shown in typical laboratory and factory environments.
机译:为了满足关键应用中工业无线控制的极低延迟约束,无线高性能方案(WirelessHP)已被引入作为有希望的解决方案。该设计在延迟方面表现出巨大的改进,但其在可靠性方面的性能尚未完全测试。虽然传统的无线系统通过数据包重传实现高可靠性,但这会损害延迟,并且在工业应用中优选基于信道编码的方法。在本文中,通过基于通用软件无线电外围平台的示威者将连接的簧片所罗门和卷积码应用于WirelessHP物理层来执行一组分组错误率(每)测试。在典型的实验室和工厂环境中,显示了通道编码以实现10(-7)级达到10(-7)级的有效性。

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