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CoAP 和 MQTT 对 NB-IoT 系统性能的影响。

Impact of CoAP and MQTT on NB-IoT System Performance.

机构信息

Ericsson Research, 02420 Jorvas, Finland.

Ukkoverkot, 00180 Helsinki, Finland.

出版信息

Sensors (Basel). 2018 Dec 20;19(1):7. doi: 10.3390/s19010007.

Abstract

The IoT protocols used for data transfer in the application layer, namely the Constraint Application Protocol (CoAP) and Message Queue Telemetry Transport (MQTT) have dependencies to the transport layer. The choice of transport, Transmission Control Protocol (TCP) or the User Datagram Protocol (UDP), on the other hand, has an impact on the Internet of Things (IoT) application level performance, especially over a wireless medium. Furthermore, we touch upon the impact of different security solutions. The motivation of this work is to look at the impact of the protocol stack on performance over a narrowband IoT (NB-IoT) link. The use case studied is infrequent small reports sent from the sensor device to a central cloud storage over a last mile radio access link. We find that while CoAP/UDP based transport performs consistently better both in terms of latency, coverage, and system capacity, MQTT/TCP also works when the system is less loaded.

摘要

应用层中用于数据传输的物联网协议,即约束应用协议(Constrained Application Protocol,CoAP)和消息队列遥测传输(Message Queue Telemetry Transport,MQTT),都依赖于传输层。另一方面,传输方式(传输控制协议(Transmission Control Protocol,TCP)或用户数据报协议(User Datagram Protocol,UDP))对物联网(IoT)应用层性能有影响,特别是在无线介质上。此外,我们还探讨了不同安全解决方案的影响。这项工作的动机是研究协议栈对窄带物联网(Narrowband IoT,NB-IoT)链路性能的影响。研究的用例是传感器设备通过最后一英里无线电接入链路向中央云存储发送不频繁的小报告。我们发现,虽然基于 CoAP/UDP 的传输在延迟、覆盖范围和系统容量方面表现一致更好,但在系统负载较低时,MQTT/TCP 也能正常工作。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e418/6338939/484b11b6ffea/sensors-19-00007-g001.jpg

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