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Robustness of IoT Application Protocols to Network Impairments

机译:物联网应用协议对网络障碍的稳健性

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Constrained Application Protocol (CoAP) and Message Queue Telemetry Transport (MQTT) are two IoT application layer protocols that are seeing increased attention and industry deployment. CoAP uses a request-response model and runs over UDP, while MQTT follows a publish-subscribe model running over TCP. For more constrained IoT devices, MQTTSensor Networks (MQTT-SN) provides a UDP-based transport between the sensor and an MQTT-SN gateway, while using TCP between that gateway and the MQTT broker. Quick UDP Internet Connections (QUIC) is a new protocol and although not originally designed for IoT devices, some design features such as reduced connection establishment time may be useful in an IoT environment. Each of these protocols seeks optimizations in features and implementation complexity based on application domains rather than having the full flexibility and adaptability of traditional transport protocols such as TCP. We investigate and analyze four protocols, namely, CoAP, MQTT, MQTT-SN and QUIC, to understand the overhead of obtaining data from an IoT device at a sink to potentially disseminate this data downstream. These constrained IoT devices often operate under challenging, varying network conditions, and it is important to understand the limitations of the protocols in such conditions. Thus, we evaluate the performance of these protocols under varying loss, delay and disruption conditions to identify the most effective environment for their operation and understand the limitations of their dynamic range. Results show that with non-confirmable CoAP a more adaptive wait timer is required; and a more streamlined QUIC protocol may be a potential alternative IoT protocol.
机译:约束应用程序协议(CoAP)和消息队列遥测传输(MQTT)是两种物联网应用程序层协议,受到越来越多的关注和行业部署。 CoAP使用请求-响应模型并在UDP上运行,而MQTT遵循在TCP上运行的发布-订阅模型。对于更受约束的IoT设备,MQTTSensor网络(MQTT-SN)在传感器和MQTT-SN网关之间提供基于UDP的传输,而在该网关和MQTT代理之间使用TCP。快速UDP Internet连接(QUIC)是一个新协议,尽管最初不是为IoT设备设计的,但某些设计功能(例如减少连接建立时间)在IoT环境中可能很有用。这些协议中的每一个都基于应用程序域寻求功能和实现复杂性的优化,而不是具有传统传输协议(如TCP)的全部灵活性和适应性。我们研究并分析了四种协议,即CoAP,MQTT,MQTT-SN和QUIC,以了解从接收器处的IoT设备获取数据以潜在地向下游分发此数据的开销。这些受约束的IoT设备通常在具有挑战性的变化网络条件下运行,因此了解此类条件下协议的局限性很重要。因此,我们评估了这些协议在变化的丢失,延迟和中断条件下的性能,以确定最有效的操作环境并了解其动态范围的局限性。结果表明,对于无法确认的CoAP,需要一个更具适应性的等待计时器。更加简化的QUIC协议可能是潜在的替代物联网协议。

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