实现室内外监测应用的快速建模和原型开发

IF 3.8 3区 计算机科学 Q1 COMPUTER SCIENCE, HARDWARE & ARCHITECTURE
Alessandra Rizzardi, Sabrina Sicari, Alberto Coen-Porisini
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引用次数: 0

摘要

如今,远程监控室内外环境的能力可以降低能耗,改善网络应用系统的整体管理和用户体验。最著名的采用远程控制的解决方案与家庭自动化(如智能家居和工业 4.0 应用)有关。物联网(IoT)技术的发展以及对绿色住宅、建筑和一般异构环境开发的投资不断增加,是推动此类智能方法发展的重要因素。虽然远程监控解决方案对人类和环境的益处显而易见,但其普及和推广却受到以下问题的阻碍:远程应用程序和底层架构的建模、设计、原型制作和进一步开发都需要一定的时间。此外,此类系统通常必须根据特定领域和相关实体的需要进行定制。因此,在本文中,我们将介绍通过针对物联网的工具、技术和协议处理一些相关室内和室外案例研究的经验,强调所考虑的解决方案的优缺点,以及对未来从业人员有用的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Towards rapid modeling and prototyping of indoor and outdoor monitoring applications

Nowadays, the capability to remotely monitor indoor and outdoor environments would allow to reduce energy consumption and improve the overall management and users’ experience of network application systems. The most known solutions adopting remote control are related to domotics (e.g., smart homes and industry 4.0 applications). An important stimulus for the development of such smart approaches is the growth of the Internet of Things (IoT) technologies and the increasing investment in the development of green houses, buildings, and, in general, heterogeneous environments. While the benefits for the humans and the environment are evident, a pervasive adoption and distribution of remote monitoring solutions are hindered by the following issue: modeling, designing, prototyping, and further developing the remote applications and underlying architecture require a certain amount of time. Moreover, such systems must be often customized on the basis of the need of the specific domain and involved entities. For such reasons, in this paper, we provide the experience made in addressing some relevant indoor and outdoor case studies through IoT-targeted tools, technologies and protocols, highlighting the advantages and disadvantages of the considered solutions as well as insights that can be useful for future practitioners.

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来源期刊
Sustainable Computing-Informatics & Systems
Sustainable Computing-Informatics & Systems COMPUTER SCIENCE, HARDWARE & ARCHITECTUREC-COMPUTER SCIENCE, INFORMATION SYSTEMS
CiteScore
10.70
自引率
4.40%
发文量
142
期刊介绍: Sustainable computing is a rapidly expanding research area spanning the fields of computer science and engineering, electrical engineering as well as other engineering disciplines. The aim of Sustainable Computing: Informatics and Systems (SUSCOM) is to publish the myriad research findings related to energy-aware and thermal-aware management of computing resource. Equally important is a spectrum of related research issues such as applications of computing that can have ecological and societal impacts. SUSCOM publishes original and timely research papers and survey articles in current areas of power, energy, temperature, and environment related research areas of current importance to readers. SUSCOM has an editorial board comprising prominent researchers from around the world and selects competitively evaluated peer-reviewed papers.
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