A Study of Electromagnetic Robustness of IO-Link Wireless and SmartMesh IP for Applications on an Agricultural Vehicle

A. Ovechkin, Brian Leeman, D. Vanoost, T. Claeys, Marcel Verhoeven, D. Pissoort
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Abstract

This paper presents a study on the electromagnetic robustness of IO-link Wireless and SmartMesh IP for their use on an agricultural vehicle. Especially the multipath fading due to the reflective nature of the agricultural vehicle is challenging for such wireless communication protocols. The electromagnetic robustness was tested in a double reverberation chamber as well as on an actual combine harvester. Detailed test setups and procedures are in the paper. Throughout the tests, several key parameters related to the quality of service (QoS) of both protocols were monitored with a specific focus on latency and packet error rate (PER). Test results show that both IO-link Wireless and SmartMesh IP experience a decrease in data throughput and an increase in latency in a (semi-)reverberant environment. In particular, transmission power needs to be carefully regulated for IOLW, while SmartMesh IP is dependent on the mesh formation and the distance between its Manager and Motes. Test results also show that a fully reverberant environment is harsher than the actual harvester. Thus, the initial steps were made to dampen the RC with absorbers to comply with the environment created in a harvester, resulting in a comparable PER of 4.1 %.
农业车辆应用IO-Link无线和SmartMesh IP的电磁鲁棒性研究
本文介绍了用于农业车辆的IO-link无线和SmartMesh IP的电磁鲁棒性研究。特别是农用车辆的反射特性所导致的多径衰落,对这种无线通信协议提出了挑战。在双混响室和实际联合收割机上测试了电磁稳健性。详细的测试设置和程序在文中。在整个测试过程中,监测了与两种协议的服务质量(QoS)相关的几个关键参数,重点关注延迟和数据包错误率(PER)。测试结果表明,在(半)混响环境中,IO-link Wireless和SmartMesh IP都经历了数据吞吐量的下降和延迟的增加。特别是,IOLW需要仔细调节传输功率,而SmartMesh IP依赖于网状结构及其管理器和Motes之间的距离。测试结果还表明,充分混响的环境比实际收割机的环境更恶劣。因此,最初的步骤是用吸收剂来抑制RC,以符合收割机中创建的环境,从而获得4.1%的可比PER。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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