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Cognition Digital Twins for Personalized Information Systems of Smart Cities: Proof of Concept

机译:智能城市个性化信息系统的认知数字双胞胎:概念证明

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Amid the rapid development of information communication technologies (ICTs), residents of future smart cities are expected to be exposed to unprecedented amounts of real-time information on a daily basis. The cognitive overload driven by an excess of complex information has become a potential issue. Nonetheless, standardized information systems are still widely used, despite individual differences in information intake. To set a foundation for the intelligent information systems of smart cities, this paper introduces methods and tools for a cognition-driven, personalized information system, which acknowledges individual differences in information preference and helps reduce the cognitive load in daily lives and at work. The proposed method includes the use of virtual reality (VR) to simulate complex tasks paired with the digital twin modeling of workers' cognitive reactions to different information formats and contents in VR simulation. Collected data are then used to build a personal digital twins model of information-driven cognition, or Cog-DT. A human subject experiment was performed with a simulated industrial facility shutdown maintenance task as a proof of concept of Cog-DT. The latest neuroimaging technology and analysis methods were applied to model unique cognitive processes pertaining to information processing. Results indicate that cognitive activities driven by different information stimuli in the work context are distinguishable and modelable with Cog-DT methods and tools. This study is expected to contribute to digital twin literature by testing a human-centered, individual-level digital twin modeling method of cognitive activities. It also sets a preliminary foundation for developing personalized information systems for the smart cities of the future.
机译:在信息通信技术(ICT)的快速发展中,未来智能城市的居民预计每天将暴露于前所未有的实时信息。超额复杂信息驱动的认知过载已成为潜在的问题。尽管如此,尽管信息摄入量差异,但仍然广泛使用标准化信息系统。为智能城市智能信息系统设定基础,本文介绍了认知驱动的个性化信息系统的方法和工具,该方法和工具承认信息偏好的个体差异,有助于降低日常生活中的认知负荷和工作。该方法包括使用虚拟现实(VR)来模拟与VR模拟中的不同信息格式和内容的工人认知反应的数字双胞胎建模配对的复杂任务。然后使用收集的数据来构建信息驱动的认知或COG-DT的个人数字双胞胎模型。用模拟工业设施关闭维护任务进行人类对象实验,作为COG-DT的概念证明。最新的神经影像系统和分析方法应用于模拟与信息处理有关的独特认知过程。结果表明,在工作环境中由不同信息刺激驱动的认知活动是可区分的,可与COG-DT方法和工具进行含义。预计本研究将通过测试人以人为本的个人级数字双胞胎模拟方法对数字双胞胎文献进行贡献。它还为开发未来智能城市的个性化信息系统制定了初步基础。

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