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Delay Optimization for Industrial Wireless Control Systems Based on Channel Characterization

机译:基于频道特征的工业无线控制系统延迟优化

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Wireless communication is gaining popularity in the industry for its simple deployment, mobility, and low cost. Ultralow latency and high reliability requirements of mission-critical industrial applications are highly demanding for wireless communication, and the indoor industrial environment is hostile to wireless communication due to the richness of reflection and obstacles. Assessing the effect of the industrial environment on the reliability and latency of wireless communication is a crucial task, yet it is challenging to accurately model the wireless channel in various industrial sites. In this article, based on the comprehensive channel measurement results from the National Institute of Standards and Technology at 2.245 and 5.4 GHz, we quantify the reliability degradation of wireless communication in multipath fading channels. A delay optimization based on the channel characterization is then proposed to minimize packet transmission times of a cyclic prefix orthogonal frequency division multiplexing system under a reliability constraint at the physical layer. When the transmission bandwidth is abundant and the payload is short, the minimum transmission time is found to be restricted by the optimal cyclic prefix duration, which is correlated with the communication distance. Results further reveal that using relays may, in some cases, reduce end-to-end latency in industrial sites, as achievable minimum transmission time significantly decreases at short communication ranges.
机译:无线通信在业界处于简单的部署,移动性和低成本的流行。超级特派团关键工业应用的超级延迟和高可靠性要求对无线通信非常苛刻,并且由于反射和障碍物的丰富性,室内工业环境具有敌对的无线通信。评估工业环境对无线通信的可靠性和延迟的影响是一个重要的任务,但准确地模拟了各种工业部位中的无线信道是挑战性的。在本文中,基于2.245和5.4 GHz的国家标准和技术研究所的综合渠道测量结果,我们量化了多径褪色渠道中无线通信的可靠性退化。然后提出基于信道表征的延迟优化来最小化在物理层的可靠性约束下最小化循环前缀正交频分复用系统的分组传输时间。当传输带宽丰富并且有效载荷短,发现最小传输时间被最佳循环前缀持续时间限制,这与通信距离相关。结果进一步揭示了在某些情况下,使用继电器可以降低工业部位的端到端潜伏期,因此可实现的最小传输时间在短期通信范围内显着降低。

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