支持coap的物联网设备之间灵活、直接的交互

Girum Teklemariam, J. Hoebeke, I. Moerman, P. Demeester
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引用次数: 3

摘要

传感器和执行器的无线通信能力使它们适用于涉及感知物理特性并对其采取行动的几种自动化解决方案。如今,基于网关或云的传感器/执行器交互模型被广泛使用。在这个模型中,每个传感器/执行器的交互都要通过网关或云。为了实现万物互联的真正物联网理念,传感器和执行器之间的直接交互(也称为绑定)非常重要。在本文中,我们介绍了一种基于CoAP的传感器/执行器绑定解决方案,其中第三方负责设置绑定,但不参与传感器和执行器之间的任何进一步交互。由于绑定的创建和执行完全基于Restful CoAP交互,因此可以在任意两个设备之间创建非常灵活的绑定。我们在Contiki中实现了这个解决方案,并通过采取不同的措施(如延迟、内存占用和数据包大小)来评估实现。
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Flexible, Direct Interactions between CoAP-enabled IoT Devices
The wireless communication capability of sensors and actuators made them suitable for several automation solutions which involve sensing physical properties and acting upon them. These days, gateway or cloud based sensor/actuator interaction models are widely used. In this model, every sensor/actuator interaction goes through the gateway or via the cloud. In order to realize the true Internet of Things philosophy where everything is interconnected, direct interactions between sensors and actuators, also called bindings, are important. In this paper, we introduce a CoAP based sensor/actuator binding solution where a 3rd party is responsible for setting up the binding, but is not involved in any of the further interactions between the sensor and actuator. As binding creation and execution is fully based on Restful CoAP interactions, very flexible bindings between any two devices can be created. We implemented this solution in Contiki and evaluated the implementation by taking different measures such as delay, memory footprint, and packet size.
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