COMFIT:物联网的开发环境

IF 6.2 2区 计算机科学 Q1 COMPUTER SCIENCE, THEORY & METHODS
Claudio M. de Farias , Italo C. Brito , Luci Pirmez , Flávia C. Delicato , Paulo F. Pires , Taniro C. Rodrigues , Igor L. dos Santos , Luiz F.R.C. Carmo , Thais Batista
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引用次数: 41

摘要

本文介绍了COMFIT(基于云和模型的物联网IDE),这是一个基于模型驱动开发和云计算范式构建的物联网开发环境。COMFIT由两个不同的模块组成:(1)应用程序开发模块,模型驱动架构(MDA)基础设施;(2)应用程序管理和执行模块,该模块包含基于云的web接口,连接到托管在云中的服务器,带有用于开发物联网(IoT)应用程序的编译器和模拟器。应用程序开发模块允许开发人员使用高抽象工件(模型)来设计物联网应用程序,这些工件(模型)可以根据应用程序视图或网络视图进行定制,从而在这两个关注点之间创建分离。由于模型可以通过应用程序开发模块自动转换为代码,COMFIT创建了一个不需要额外配置来正确编译或模拟生成代码的环境,将物联网应用程序的开发生命周期集成到一个环境中,部分托管在客户端,部分托管在云中。在目前的版本中,COMFIT支持两种操作系统,即contki和TinyOS,这两种操作系统广泛应用于物联网设备。COMFIT支持这些平台的自动代码生成、模拟执行和应用程序的代码编译,并且开发工作量很低。最后,COMFIT能够与物联网实验室进行交互,物联网实验室是一个开放的物联网应用测试平台,允许开发人员使用不同的配置测试他们的应用程序,而无需使用本地物联网设备。在开发工作、生成代码的质量和可伸缩性方面,执行了几个评估来评估COMFIT的关键特性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
COMFIT: A development environment for the Internet of Things

This paper presents COMFIT (Cloud and Model based IDE for the Internet of Things), a development environment for the Internet of Things that was built grounded on the paradigms of model driven development and cloud computing. COMFIT is composed of two different modules: (1) the App Development Module, a model-driven architecture (MDA) infrastructure, and (2) the App Management and Execution Module, a module that contains cloud-based web interface connected to a server hosted in the cloud with compilers and simulators for developing Internet of Things (IoT) applications. The App Development Module allows the developers to design IoT applications using high abstraction artifacts (models), which are tailored to either the application perspective or the network perspective, thus creating a separation between these two concerns. As models can be automatically transformed into code through the App Development Module, COMFIT creates an environment where there is no need of additional configurations to properly compile or simulate the generated code, integrating the development lifecycle of IoT applications into a single environment partially hosted in the client side and partially in the cloud. In its current version, COMFIT supports two operating systems, namely Contiki and TinyOS, which are widely used in IoT devices. COMFIT supports automatic code generation, execution of simulations, and code compilation of applications for these platforms with low development effort. Finally, COMFIT is able to interact with IoT-lab, an open testbed for IoT applications, which allows the developers to test their applications with different configurations without the need of using local IoT devices. Several evaluations were performed to assess COMFIT’s key features in terms of development effort, quality of generated code, and scalability.

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来源期刊
CiteScore
19.90
自引率
2.70%
发文量
376
审稿时长
10.6 months
期刊介绍: Computing infrastructures and systems are constantly evolving, resulting in increasingly complex and collaborative scientific applications. To cope with these advancements, there is a growing need for collaborative tools that can effectively map, control, and execute these applications. Furthermore, with the explosion of Big Data, there is a requirement for innovative methods and infrastructures to collect, analyze, and derive meaningful insights from the vast amount of data generated. This necessitates the integration of computational and storage capabilities, databases, sensors, and human collaboration. Future Generation Computer Systems aims to pioneer advancements in distributed systems, collaborative environments, high-performance computing, and Big Data analytics. It strives to stay at the forefront of developments in grids, clouds, and the Internet of Things (IoT) to effectively address the challenges posed by these wide-area, fully distributed sensing and computing systems.
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