首页> 外文会议>ICONIP 2008;International conference on advances in neuro-information processing >Automated and Holistic Design of Intelligent and Distributed Integrated Sensor Systems with Self-x Properties for Applications in Vision, Robotics, Smart Environments, and Culinary Assistance Systems
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Automated and Holistic Design of Intelligent and Distributed Integrated Sensor Systems with Self-x Properties for Applications in Vision, Robotics, Smart Environments, and Culinary Assistance Systems

机译:具有Self-x属性的智能分布式分布式集成传感器系统的自动化和整体设计,适用于视觉,机器人,智能环境和烹饪辅助系统

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The ongoing advance in micro technologies gives rise to increasingly versatile and capable sensors as well as unprecedented computational power and communication options in diminishing scale. The notion of smart dust summarizes ubiquitous computing and sensing application systems, which can serve for local as well as global information acquisition and decision making. For off-the-shelf-nodes, and even more for dedicated physical designs, the system design process becomes increasingly challenging and potentially intractable. Automated design methods emerging for intelligent systems are introduced as a remedy. These considerations will be extended to variations, that multiple system instances have to face in real-world applications and potential compensation by incorporation of self-x properties. These concepts are elucidated for the case of reconfigurable and evolvable sensor electronics. Finally, an application perspective of the presented approach for integrated distributed sensing in home automation, assisted living, and in particular, smart kitchen applications, denoted as culinary assistance systems will be presented.
机译:微型技术的不断发展带来了越来越多的功能和能力越来越强的传感器以及前所未有的计算能力和通信选择,并且规模越来越小。智能尘埃的概念概括了无处不在的计算和传感应用系统,它们可以用于本地以及全球信息获取和决策。对于现成的节点,甚至对于专用物理设计而言,甚至更多,系统设计过程变得越来越具有挑战性,并且可能难以解决。作为一种补救措施,引入了针对智能系统的自动化设计方法。这些考虑因素将扩展到各种变化中,即在多个应用程序实例中必须通过结合self-x属性来面对现实世界中的应用程序和潜在的补偿。在可重新配置和发展的传感器电子设备的情况下,阐明了这些概念。最后,将介绍所提出的方法的应用前景,该方法用于家庭自动化,辅助生活,尤其是智能厨房应用中的集成分布式传感,被称为烹饪辅助系统。

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