物联网的真正自配置

I. Chatzigiannakis, H. Hasemann, Marcel Karnstedt, Oliver Kleine, A. Kröller, Myriam Leggieri, D. Pfisterer, K. Römer, C. Truong
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引用次数: 53

摘要

为了使物联网最终成为现实,需要克服不同层面的障碍。对于即将到来的离开技术专家和科学家领域的挑战来说尤其如此。设备需要连接到互联网,并能够提供服务。他们必须以机器可理解的方式宣布和描述这些服务,以便面向用户的系统能够找到并利用它们。它们必须了解它们的物理环境,这样它们就可以在没有明确配置或编程的情况下感知或行动。最后,必须能够以新颖和令人惊讶的方式将物联网设备包含在结合来自不同来源的本地和远程数据的复杂系统中。我们今天展示了这一切是如何成为可能的。我们的解决方案使用开放标准和最先进的协议来实现这一点。它的通信部分基于6LowPAN和CoAP,语义网技术用于有意义的数据交换,自主传感器关联用于了解环境,以及围绕关联数据原则构建的软件,为新颖和不可预见的应用开放。
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True self-configuration for the IoT
For the Internet of Things to finally become a reality, obstacles on different levels need to be overcome. This is especially true for the upcoming challenge of leaving the domain of technical experts and scientists. Devices need to connect to the Internet and be able to offer services. They have to announce and describe these services in machine-understandable ways so that user-facing systems are able to find and utilize them. They have to learn about their physical surroundings, so that they can serve sensing or acting purposes without explicit configuration or programming. Finally, it must be possible to include IoT devices in complex systems that combine local and remote data, from different sources, in novel and surprising ways. We show how all of that is possible today. Our solution uses open standards and state-of-the art protocols to achieve this. It is based on 6LowPAN and CoAP for the communications part, semantic web technologies for meaningful data exchange, autonomous sensor correlation to learn about the environment, and software built around the Linked Data principles to be open for novel and unforeseen applications.
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