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Quantifying Observability in State Estimation

机译:量化状态估计中的可观察性

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Observability means the aptitude for estimating the system state in its entirety from data currently available. As such, the problem of quantifying this aptitude assumes practical interest. Dealing with observable grids, this paper concentrates on proposing indicators capable of establishing unobservability risks. These indicators are based on measurement criticality analyses (with the aid of Venn diagrams) for a given network configuration. They are obtained in terms of the probability of unobservability, assuming that an event has occurred, such as the unavailability of: a single measurement; one pair of measurements; one k-tuple of measurements; a single metering unit; a single network branch; one pair of network branches. The potential/practical application of the proposed indicators is illustrated by the introduction of metric patterns, capable of reducing the information on unobservability risks to a single quantity. Numerical results obtained with the IEEE 14- and 118-bus test systems exemplify the computation of the proposed indicators.
机译:<?Pub Dtl?>可观察性是指根据当前可用数据整体估计系统状态的能力。这样,量化这种能力的问题就具有实际意义。在处理可观察网格时,本文集中于提出能够建立不可观察风险的指标。这些指标基于给定网络配置的测量重要性分析(借助维恩图)。假设事件已发生,例如无法进行以下测量,则它们是根据不可观测的概率获得的:一对测量; 1个k元组的测量值;单个计量单元;单个网络分支;一对网络分支。提出的指标的潜在/实际应用通过引入度量模式来说明,该度量模式能够将有关不可观察性风险的信息减少到单个数量。通过IEEE 14和118总线测试系统获得的数值结果证明了所建议指标的计算。

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