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2012 3rd IEEE International Conference on the Internet of Things最新文献

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True self-configuration for the IoT 物联网的真正自配置
Pub Date : 2012-10-01 DOI: 10.1109/IOT.2012.6402298
I. Chatzigiannakis, H. Hasemann, Marcel Karnstedt, Oliver Kleine, A. Kröller, Myriam Leggieri, D. Pfisterer, K. Römer, C. Truong
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.
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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引用次数: 53
RDF provisioning for the Internet of Things 物联网的RDF供应
Pub Date : 2012-10-01 DOI: 10.1109/IOT.2012.6402316
H. Hasemann, A. Kröller, Max Pagel
We present the platform-independent Wiselib RDF Provider for embedded IoT devices such as sensor nodes. It enables the devices to act as semantic data providers. They can describe themselves, including their services, sensors, and capabilities, by means of RDF documents. Used in a protocol stack that provides Internet connectivity (6LowPAN) and a service layer (CoAP), a sensor can autoconfigure itself, connect to the Internet, and provide Linked Data without manual intervention. We introduce Streaming HDT, a lightweight serialization format for RDF documents that allows for transmitting compressed documents with minimal effort for the encoding; this is tailored for typical IoT applications where the embedded devices are often senders and seldom receivers of complete documents.
我们为嵌入式物联网设备(如传感器节点)提供了独立于平台的Wiselib RDF提供者。它使设备能够充当语义数据提供者。它们可以通过RDF文档描述自己,包括它们的服务、传感器和功能。在提供互联网连接的协议栈(6LowPAN)和服务层(CoAP)中使用,传感器可以自动配置自身,连接到互联网,并提供关联数据,而无需人工干预。我们介绍了流式HDT,一种用于RDF文档的轻量级序列化格式,它允许以最小的编码工作量传输压缩文档;这是为典型的物联网应用量身定制的,其中嵌入式设备通常是完整文档的发送者,很少是接收者。
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引用次数: 48
A configurable RFID sensor tag baseband conforming to IEEE 1451.7 Standard 符合IEEE 1451.7标准的可配置RFID传感器标签基带
Pub Date : 2012-10-01 DOI: 10.1109/IOT.2012.6402305
H. Han, Lingzhi Fu, Min Li, Junyu Wang
This paper presents a design of sensor tag baseband based on IEEE 1451.7 standard. In this work, general UHF RFID commands is implemented by the hardware state machine in baseband and an embedded 8-bit microcontroller is adopted to process IEEE 1451.7 standard. The simulation and test results show that this design is able to realize the IEEE 1451.7 standard with high flexibility. The power consumption of the baseband is about 18μW at the clock frequency of 1.28MHz and 1.2V power supply, which is suitable for RFID sensor tags and portable application.
提出了一种基于IEEE 1451.7标准的传感器标签基带设计。在本工作中,UHF RFID通用命令由基带硬件状态机实现,采用嵌入式8位微控制器处理IEEE 1451.7标准。仿真和测试结果表明,该设计能够灵活地实现IEEE 1451.7标准。时钟频率为1.28MHz,电源为1.2V时,基带功耗约为18μW,适用于RFID传感器标签和便携式应用。
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引用次数: 4
Complex sensing event process of IoT application based on epcglobal architecture and IEEE 1451 基于epcglobal架构和IEEE 1451的物联网应用复杂传感事件处理
Pub Date : 2012-10-01 DOI: 10.1109/IOT.2012.6402309
Chao-Wen Tseng, Chih-Ming Chang, Chua-Huang Huang
In this paper, we present an Internet of Things (IoT) framework based on EPCglobal architecture and IEEE 1451 smart transducer standard series. The mechanism of handling complex sensing events which are generated and aggregated from things (tags and transducers) is also proposed and simulated. Complex sensing event process is an effective facility to achieve intelligence of an IoT application that empowers a system to analyze object data, to reason of sensing events, and to trigger responding actions. We develop the IoT management platform to verify the IoT framework and simulate an EcoPark application to demonstrate the mechanism of complex sensing event process. The result shows that the framework is feasible and the mechanism is practical.
在本文中,我们提出了一个基于EPCglobal架构和IEEE 1451智能传感器标准系列的物联网框架。提出并模拟了由事物(标签和传感器)产生和聚合的复杂传感事件的处理机制。复杂的感知事件过程是实现物联网应用智能化的有效工具,使系统能够分析对象数据,对感知事件进行推理,并触发响应动作。我们开发了物联网管理平台来验证物联网框架,并模拟了一个EcoPark应用程序来演示复杂感知事件过程的机制。结果表明,该框架是可行的,机制是实用的。
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引用次数: 6
A context-aware computing mediated dynamic service composition and reconfiguration for ubiquitous environment 面向泛在环境的基于上下文感知计算的动态服务组合与重构
Pub Date : 2012-10-01 DOI: 10.1109/IOT.2012.6402299
Tao Gong, Zheng Hu, Haifeng Liu, F. Lin, Dian Zhou, Hui Tian
Context-aware and customization services are expected in the forthcoming ubiquitous computing environment. In order to make SOA provide context-aware services, we propose a SOA-extended architecture, which integrates a Context-aware Decision Making system that can evaluate services for mediating dynamic service composition and reconfiguration according to the context information. In the Context-aware Decision Making system, a semantic multi-dimension model is defined for the context representation and inference. By using this context model, we explore an effective mechanism that can evaluate all services from two aspects: QoS and user preferences. To evaluate user preferences for services, a method based on Association Rules in data mining is defined. This evaluation result is a configuration that can guide SOA to select services that are most appropriate for the current context environment. Finally, a language called Abstract BPEL and a service broker middleware are included to assist our architecture to enable dynamic service composition and reconfiguration. In this paper, a case study with intelligent house is also presented for verifying the featured functionalities of our architecture.
上下文感知和定制服务将出现在即将到来的泛在计算环境中。为了使SOA提供上下文感知的服务,我们提出了一个SOA扩展的体系结构,该体系结构集成了一个上下文感知的决策系统,该系统可以评估服务,以根据上下文信息进行动态的服务组合和重新配置。在上下文感知决策系统中,定义了一个用于上下文表示和推理的语义多维模型。通过使用这个上下文模型,我们探索了一种有效的机制,可以从两个方面评估所有服务:QoS和用户偏好。为了评估用户对服务的偏好,定义了一种基于关联规则的数据挖掘方法。这个评估结果是一个配置,它可以指导SOA选择最适合当前上下文环境的服务。最后,还包括一种称为抽象BPEL的语言和一个服务代理中间件,以帮助我们的体系结构支持动态服务组合和重新配置。本文还提出了一个智能住宅的案例研究,以验证我们的建筑的特色功能。
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引用次数: 3
期刊
2012 3rd IEEE International Conference on the Internet of Things
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