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Design of instrumentation in process plants using Groebner bases

机译:使用Groebner基座设计过程工厂中的仪器

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Reliability and optimal sensor design are of great interest for control engineers and the researcher community. The severity of faults is addressed through redundancy analysis. A structural analysis is introduced which uses symbolic calculus to determine which redundancy exists in the system and provides the means to find the particular sensor defaults.rnThe paper is organized as follows. The first part gives an overview on Groebner bases and their programming. Definitions are included to specify explicitly what should be understood by the terms "symbolic calculus software" and more specifically lexicographic programming and Groebner base algorithms. The second part develops the concept of observability bases and in the third part we show how to use these bases to make optimal and reliable design. The biggest benefit of this method is the ability to extend the mathematical process to the n-linear case.
机译:可靠性和最佳的传感器设计对于控制工程师和研究人员群体非常重要。故障的严重性通过冗余分析解决。介绍了一种结构分析,该分析使用符号演算来确定系统中存在哪些冗余,并提供查找特定传感器默认值的方法。本文的结构如下。第一部分概述了Groebner的基础及其编程。包含定义以明确指定术语“符号演算软件”应理解的内容,更具体地说是词典编纂和Groebner基本算法。第二部分提出了可观察性基准的概念,第三部分介绍了如何使用这些基准进行最佳和可靠的设计。这种方法的最大好处是能够将数学过程扩展到n线性情况。

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