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Disaster Management and Profile Modelling of IoT Objects: Conceptual Parameters for Interlinked Objects in Relation to Social Network Analysis

机译:物联网对象的灾难管理和配置文件建模:与社交网络分析相关的互连对象的概念参数

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In recent years, the emergence of ubiquitous and pervasive computing suggests the radical transformation of the Internet to incorporate physical objects. The transformation suggests the enabling of a new form of communication and interaction style that incorporates people, their smart devices and their physical objects through the utilization of distributed sensors spread in the environment. In this study, we propose extending Internet of Things (IoT) by modelling an IoT enabled smart environment as a whole, representing the dynamic communication and interaction among all objects (users, devices, physical objects and sensors). This is by recognizing and categorizing objects' properties in the form of a generic profile. We also reflect this in a disaster management context. That is by identifying which of the parameters of these smart objects are fixed, constant and persistent over time and which parameters are actually change over time, i.e. those characterized by their transient and dynamic nature. Thus, through the process of communication and interaction of the objects, we analyze parameters by demonstrating their static and/or dynamic properties as well as those supporting context-aware variables which are evident in disaster scenarios. To achieve these goals, we designed the persistent or temporal relationships to encompass internal information of smart-objects, along with their characteristics that actually depict their capacity to offer services to users by properties' matchmaking. The interlinked relationships represent a 'social network' providing a terrain of flexible scenarios that would lead to tailored parameters to fit user preferences. To enable communication among them in a dynamic dimension we utilized a distributed topology in which communication could occur indirectly between objects. Finally, we detailed a generic - but equally applicable for disaster management - case scenario in which we used graph theory to demonstrate how embedded intell- gence to real-life objects will be able to assist the smart-resource pairing, thus improving resource discovery and harvesting process by taking into consideration user needs and preferences.
机译:近年来,无处不在的无处不在的计算技术的出现暗示了互联网对包含物理对象的巨大变革。这一转变表明,人们可以通过利用分布在环境中的分布式传感器,实现一种新形式的通信和交互方式,将人,他们的智能设备和他们的物理对象结合在一起。在本研究中,我们建议通过对支持IoT的智能环境进行整体建模来扩展物联网(IoT),以表示所有对象(用户,设备,物理对象和传感器)之间的动态通信和交互。这是通过以通用概要文件的形式识别和分类对象的属性来进行的。我们也在灾难管理环境中反映出这一点。即通过识别这些智能对象的哪些参数随时间是固定的,恒定的和持久的,以及哪些参数实际上随时间而变化的,即那些以其瞬时和动态性质为特征的参数。因此,通过对象的通信和交互过程,我们通过显示参数的静态和/或动态属性以及支持在灾难场景中显而易见的上下文感知变量的参数来分析参数。为了实现这些目标,我们设计了持久性或时间性关系,以包含智能对象的内部信息,以及它们的特征,这些特征实际上描述了它们通过属性对接为用户提供服务的能力。相互关联的关系表示一个“社交网络”,提供了各种灵活方案的地形,这将导致量身定制的参数适合用户的偏好。为了在动态范围内实现它们之间的通信,我们利用了一种分布式拓扑结构,其中通信可以在对象之间间接发生。最后,我们详细介绍了一个通用的案例,但同样适用于灾难管理。在该案例中,我们使用图论来演示对现实对象的嵌入式智能将如何协助智能资源配对,从而改善资源发现和通过考虑用户需求和偏好来进行收获过程。

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