Comparison of two lightweight protocols for smartphone-based sensing

Niccolo De Caro, W. Colitti, K. Steenhaut, Giuseppe Mangino, G. Reali
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引用次数: 128

Abstract

Smartphones are equipped with numerous sensors and have become sophisticated sensing platforms. However, several sensing applications running on a smartphone can degrade the device performance. This can be overcome by using lightweight application protocols which improve the smartphone performance in terms of bandwidth consumption, battery lifetime and communication latency. This work focuses on two emerging application protocols: the Message Queuing Telemetry Transport (MQTT) and the Constrained Application Protocol (CoAP). Although both protocols have been designed for highly constrained environments such as sensors, they are also appropriate to be adopted in smartphone applications. We provide a qualitative and quantitative comparison between MQTT and CoAP when used as smartphone application protocols and we give preliminary indications on the application scenarios in which either protocol should be adopted. While MQTT has already been adopted in smartphone applications, CoAP is relatively new and has up to now mainly been considered for sensors and actuators. Our comparison shows that CoAP can be a valid alternative to MQTT for certain application scenarios.
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基于智能手机的传感两种轻量级协议的比较
智能手机配备了众多传感器,已经成为复杂的传感平台。然而,在智能手机上运行的几个传感应用程序可能会降低设备性能。这可以通过使用轻量级应用程序协议来克服,这些协议可以提高智能手机在带宽消耗、电池寿命和通信延迟方面的性能。这项工作的重点是两个新兴的应用协议:消息队列遥测传输(MQTT)和约束应用协议(CoAP)。虽然这两个协议都是为高度受限的环境(如传感器)设计的,但它们也适用于智能手机应用程序。我们提供了MQTT和CoAP作为智能手机应用协议时的定性和定量比较,并给出了应该采用哪一种协议的应用场景的初步指示。虽然MQTT已经在智能手机应用中采用,但CoAP相对较新,目前主要考虑用于传感器和执行器。我们的比较表明,对于某些应用程序场景,CoAP可以作为MQTT的有效替代方案。
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