Lanza Jorge, Sanchez Luis, Gomez David, Elsaleh Tarek, Steinke Ronald, Cirillo Flavio
Network Planning and Mobile Communications Lab. Universidad de Cantabria, Edificio Ingeniería de Telecomunicación, Plaza de la Ciencia, Santander, 39005 Cantabria, Spain.
Institute for Communication Systems (ICS), University of Surrey, James Clerk Maxwell Building, Guildford, Surrey, GU2 7XH Guildford, UK.
Sensors (Basel). 2016 Jun 29;16(7):1006. doi: 10.3390/s16071006.
The Internet-of-Things (IoT) is unanimously identified as one of the main pillars of future smart scenarios. The potential of IoT technologies and deployments has been already demonstrated in a number of different application areas, including transport, energy, safety and healthcare. However, despite the growing number of IoT deployments, the majority of IoT applications tend to be self-contained, thereby forming application silos. A lightweight data centric integration and combination of these silos presents several challenges that still need to be addressed. Indeed, the ability to combine and synthesize data streams and services from diverse IoT platforms and testbeds, holds the promise to increase the potentiality of smart applications in terms of size, scope and targeted business context. In this article, a proof-of-concept implementation that federates two different IoT experimentation facilities by means of semantic-based technologies will be described. The specification and design of the implemented system and information models will be described together with the practical details of the developments carried out and its integration with the existing IoT platforms supporting the aforementioned testbeds. Overall, the system described in this paper demonstrates that it is possible to open new horizons in the development of IoT applications and experiments at a global scale, that transcend the (silo) boundaries of individual deployments, based on the semantic interconnection and interoperability of diverse IoT platforms and testbeds.
物联网(IoT)被一致认为是未来智能场景的主要支柱之一。物联网技术及其应用的潜力已在包括交通、能源、安全和医疗保健等多个不同应用领域得到了证明。然而,尽管物联网应用越来越多,但大多数物联网应用往往是自成体系的,从而形成了应用孤岛。对这些孤岛进行轻量级的数据中心集成和组合存在一些仍需解决的挑战。事实上,将来自不同物联网平台和测试平台的数据流和服务进行组合和综合的能力,有望在规模、范围和目标业务背景方面提高智能应用的潜力。在本文中,将描述一个通过基于语义的技术联合两个不同物联网实验设施的概念验证实现。将描述所实现系统和信息模型的规范与设计,以及所开展开发工作的实际细节及其与支持上述测试平台的现有物联网平台的集成。总体而言,本文所描述的系统表明,基于不同物联网平台和测试平台的语义互连与互操作性,有可能在全球范围内为物联网应用和实验的开发开辟新视野,超越单个部署的(孤岛)界限。