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Automated Construction of Node Software Using Attributes in a Ubiquitous Sensor Network Environment

机译:在无处不在的传感器网络环境中使用属性自动构建节点软件

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摘要

In sensor networks, nodes must often operate in a demanding environment facing restrictions such as restricted computing resources, unreliable wireless communication and power shortages. Such factors make the development of ubiquitous sensor network (USN) applications challenging. To help developers construct a large amount of node software for sensor network applications easily and rapidly, this paper proposes an approach to the automated construction of node software for USN applications using attributes. In the proposed technique, application construction proceeds by first developing a model for the sensor network and then designing node software by setting the values of the predefined attributes. After that, the sensor network model and the design of node software are verified. The final source codes of the node software are automatically generated from the sensor network model. We illustrate the efficiency of the proposed technique by using a gas/light monitoring application through a case study of a Gas and Light Monitoring System based on the Nano-Qplus operating system. We evaluate the technique using a quantitative metric—the memory size of execution code for node software. Using the proposed approach, developers are able to easily construct sensor network applications and rapidly generate a large number of node softwares at a time in a ubiquitous sensor network environment.
机译:在传感器网络中,节点通常必须在要求苛刻的环境中运行,这些环境面临诸如受限的计算资源,不可靠的无线通信和功率不足之类的限制。这些因素使无处不在的传感器网络(USN)应用程序的开发具有挑战性。为了帮助开发人员轻松,快速地为传感器网络应用程序构建大量的节点软件,本文提出了一种使用属性自动构建USN应用程序节点软件的方法。在提出的技术中,首先通过为传感器网络开发模型,然后通过设置预定义属性的值来设计节点软件,从而进行应用程序构建。之后,验证了传感器网络模型和节点软件的设计。节点软件的最终源代码是根据传感器网络模型自动生成的。通过对基于Nano-Qplus操作系统的气体和光监控系统的案例研究,我们通过使用气体/光监控应用程序来说明所提出技术的效率。我们使用定量指标(节点软件执行代码的内存大小)评估该技术。使用提出的方法,开发人员能够轻松构建传感器网络应用程序,并在无处不在的传感器网络环境中一次快速生成大量节点软件。

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