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Latency evaluation in a Bluetooth-CAN dual media sensor network

机译:Bluetooth-CAN双媒体传感器网络中的延迟评估

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In this paper, a system is described which implements the communication between a controller area network (CAN) bus and wireless Bluetooth (BT) networks. The importance of such a system stems from the widespread use of CAN in industrial automation and the growing interest for deploying wireless sensor and actuator networks at the same environment. CAN is known for its robustness and reliability while wireless networks drastically reduce costs and the efforts of installation and configuration. Among the many wireless network technologies available at this date, Bluetooth is neither the fastest nor the cheapest solution, but it complies with the requirements of robustness that industrial applications impose. The developed system forms a data communication environment that comprises two distinct networks, which are interconnected by a bridge-like structure that allows data from sensors that are connected to a CAN bus to be available at the BT network and vice-versa. The latencies due to the interaction between the two different protocols were identified and studied in order to implement a reliable, efficient and satisfactory network of sensors and actuators. Measurement results from an experimental implementation of the system is presented and discussed. An important conclusion from the obtained results is that for high baud rates, average latency is less than 10ms and jitter is less than 2ms, thus showing that the dual media network is a competitive solution for industrial automation.
机译:在本文中,描述了一种实现控制器局域网(CAN)总线与无线蓝牙(BT)网络之间的通信的系统。这种系统的重要性源于工业自动化中CAN的广泛使用以及在同一环境中部署无线传感器和执行器网络的兴趣日益浓厚。 CAN以其健壮性和可靠性而著称,而无线网络则大大降低了成本,并减少了安装和配置工作。迄今为止,在众多可用的无线网络技术中,蓝牙既不是最快的解决方案,也不是最便宜的解决方案,但是它符合工业应用对坚固性的要求。所开发的系统形成了一个数据通信环境,该环境包括两个不同的网络,这些网络通过桥状结构互连,该结构允许来自连接至CAN总线的传感器的数据在BT网络上可用,反之亦然。为了实现可靠,高效和令人满意的传感器和执行器网络,对两种不同协议之间的相互作用引起的延迟进行了识别和研究。介绍并讨论了系统实验实现的测量结果。从获得的结果中得出的重要结论是,对于高波特率,平均延迟小于10ms,抖动小于2ms,因此表明双媒体网络是工业自动化的竞争解决方案。

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