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Performance evaluation of IoT protocols under a constrained wireless access network

机译:受限无线接入网络下物联网协议的性能评估

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One of the challenges faced by today's Internet of Things (IoT) is to efficiently support machine-to-machine communication, given that the remote sensors and the gateway devices are connected through low bandwidth, unreliable, or intermittent wireless communication links. In this paper, we quantitatively compare the performance of IoT protocols, namely MQTT (Message Queuing Telemetry Transport), CoAP (Constrained Application Protocol), DDS (Data Distribution Service) and a custom UDP-based protocol in a medical setting. The performance of the protocols was evaluated using a network emulator, allowing us to emulate a low bandwidth, high system latency, and high packet loss wireless access network. This paper reports the observed performance of the protocols and arrives at the conclusion that although DDS results in higher bandwidth usage than MQTT, its superior performance with regard to data latency and reliability makes it an attractive choice for medical IoT applications and beyond.
机译:鉴于远程传感器和网关设备通过低带宽,不可靠或间歇性的无线通信链路连接,当今的物联网(IoT)面临的挑战之一是有效地支持机器对机器的通信。在本文中,我们定量地比较了医疗环境中IoT协议的性能,即MQTT(消息队列遥测传输),CoAP(受约束的应用协议),DDS(数据分发服务)和基于UDP的自定义协议。使用网络仿真器评估了协议的性能,从而使我们能够仿真低带宽,高系统延迟和高丢包率的无线访问网络。本文报告了观察到的协议性能,得出的结论是,尽管DDS的带宽使用率高于MQTT,但其在数据延迟和可靠性方面的优越性能使其成为医疗物联网应用及其他应用的有吸引力的选择。

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