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Time analysis of wireless controller area network-based fire and gas safety system

机译:基于无线控制器局域网的火灾与气体安全系统的时间分析

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Fire and gas safety (FGS) system are important tools for safeguarding process plants and production facilities that handle flammable and toxic materials. In general, a conventional fire and gas system has several shortcomings, such as weakness to noise and false alarms. In order to overcome these shortcomings, controller area network (CAN)-based FGS system has been implemented in our previous work. Further, considering that FGS systems are employed in hazardous environments, where wireless implementation of CAN is desirous, an attempt to make CAN wireless is carried out for these systems in this work, by using the radio protocol IEEE 802.15.4 to communicate CAN messages wireless. This work is a continuation of our previous work. Here the wired CAN interface is converted to wireless CAN and response time analysis of the system is done using CANoe v7.6.
机译:火灾和气体安全(FGS)系统是保护处理易燃和有毒物质的加工厂和生产设施的重要工具。通常,常规的消防和煤气系统具有一些缺点,例如对噪声的弱点和错误警报。为了克服这些缺点,在我们以前的工作中已经实现了基于控制器局域网(CAN)的FGS系统。此外,考虑到在危险环境中使用FGS系统,在这些环境中需要CAN的无线实现,因此通过使用无线电协议IEEE 802.15.4与CAN进行无线通信,试图在这些工作中对这些系统进行CAN无线通信。 。这项工作是我们先前工作的延续。此处,有线CAN接口转换为无线CAN,并使用CANoe v7.6对系统进行响应时间分析。

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