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Self-descriptive IF THEN rules from signal measurements: A holonic-based computational technique

机译:信号测量中的自描述IF THEN规则:基于全息的计算技术

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A holon is a bio-inspired conceptual entity that, like cells in a living organism, behaves as a part and a whole at the same time. Holonic systems have been the subject of intense research in the latest years due to their properties such as self-organization, self-similarity and capability of handling hierarchically-nested granularity levels. Lesser attention indeed has been paid by engineers to the aspect of self-description, i. e. the ability to describe itself in terms of self-contained descriptors. Self-description can be useful in measurement settings where the only available knowledge is embedded in data in terms of hidden rules behind observed signals. In this work, a heuristic technique is employed to extract self-descriptive IF THEN rules from measurement signals. These rules are considered holonic in that they represent a whole described in terms of relationships among their parts. An example taken from a real measurement scenario is reported and commented in detail.
机译:贺龙是一种受生物启发的概念实体,就像活生物体中的细胞一样,其行为既是整体又是整体。全息系统由于其自身的特性(例如自组织,自相似性和处理分层嵌套的粒度级别的能力),近年来已成为研究的热点。工程师的确很少关注自我描述的方面,即自我描述。 e。用独立的描述符描述自身的能力。自我描述在测量设置中非常有用,在测量设置中,根据观察到的信号背后的隐藏规则,将唯一可用的知识嵌入到数据中。在这项工作中,采用启发式技术从测量信号中提取自描述的IF THEN规则。这些规则被认为是完整的,因为它们代表了根据各个部分之间的关​​系描述的整体。报告并评论了来自实际测量场景的示例。

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