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Transmission Functions and its application to the analysis of time uncertainties in Protection Engineering

机译:传递函数及其在防护工程中时间不确定性分析中的应用

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In this paper we explore the concept of transmission Functions and its application to the resolution of the problem posed by the uncertainty in the time to take manual protective actions due for instance to different operator abilities. This time uncertainty is a very special kind of uncertainty with obvious relevance in Protection Engineering problems. Tackling it involves a large amount of simulations of transients associated to sequences of system transitions, resulting from those actions, where the only difference from one simulation to another is the time interval between transitions, the evolution laws being always the same. In order to solve such type of problems, a new formalism is proposed based on the concept of transmission Function. We prove that for a large class of Multiple Input-Multiple Output (MIMO) piecewise linear systems, the output may be obtained as additive contributions of each interval of the sequence, each one characterized via a Transmission Function. We then provide efficient methods to compute Transmission Functions of sequences of canonical Single Input-Single Output (SISO) piecewise systems, and to find the locus of protective action times that lead to damage (damage domain).
机译:在本文中,我们探讨了传递函数的概念及其在解决因操作员能力不同而采取手动保护措施的不确定性所带来的问题中的应用。时间不确定性是一种非常特殊的不确定性,与保护工程问题具有明显的相关性。解决这些问题涉及到大量与系统转换序列相关的瞬态模拟,这些模拟是由这些动作引起的,其中一个模拟与另一个模拟的唯一区别是转换之间的时间间隔,演化规律始终相同。为了解决这类问题,基于传递函数的概念提出了一种新的形式主义。我们证明,对于一大类多输入多输出(MIMO)分段线性系统,输出可以作为序列每个间隔的累加贡献而获得,每个间隔都通过传输函数来表征。然后,我们提供了有效的方法来计算规范的单输入单输出(SISO)分段系统序列的传输函数,并找出导致损坏(损坏域)的保护性动作时间。

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