Semantic compression for edge-assisted systems

Igor Burago, M. Levorato, Sameer Singh
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引用次数: 3

Abstract

A novel semantic approach to data selection and compression is presented for the dynamic adaptation of IoT data processing and transmission within “wireless islands”, where a set of sensing devices (sensors) are interconnected through one-hop wireless links to a computational resource via a local access point. The core of the proposed technique is a cooperative framework where local classifiers at the mobile nodes are dynamically crafted and updated based on the current state of the observed system, the global processing objective and the characteristics of the sensors and data streams. The edge processor plays a key role by establishing a link between content and operations within the distributed system. The local classifiers are designed to filter the data streams and provide only the needed information to the global classifier at the edge processor, thus minimizing bandwidth usage. However, the better the accuracy of these local classifiers, the larger the energy necessary to run them at the individual sensors. A formulation of the optimization problem for the dynamic construction of the classifiers under bandwidth and energy constraints is proposed and demonstrated on a synthetic example.
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边缘辅助系统的语义压缩
提出了一种新的数据选择和压缩语义方法,用于“无线孤岛”内物联网数据处理和传输的动态适应,其中一组传感设备(传感器)通过一跳无线链路通过本地接入点连接到计算资源。该技术的核心是一个协作框架,其中移动节点上的局部分类器根据观察系统的当前状态、全局处理目标以及传感器和数据流的特征动态地制作和更新。边缘处理器通过在分布式系统内建立内容和操作之间的链接发挥关键作用。局部分类器被设计用来过滤数据流,并只向边缘处理器的全局分类器提供所需的信息,从而最大限度地减少带宽使用。然而,这些局部分类器的准确性越好,在单个传感器上运行它们所需的能量就越大。提出了一种带宽和能量约束下分类器动态构造优化问题的表述,并通过一个综合算例进行了验证。
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