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Now with the new fault locator feature, we're able to detect and precisely locate faults in any network to within 1% of the cable length".
Recently a new feature was added: the fault locator.
The achieved results ensure the effectiveness of the proposed fault locator irrespective to fault conditions.
The results also show that the proposed fault locator is independent of the power system configuration.
The article discusses an algorithm for a one-sided, impedance-based (transmission) line fault locator using line topology.
Thereby making it possible to effectively implement an artificial intelligence (AI) based fault locator on a real system.
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One end impedance fault locators calculate the location of a fault based on the impedance from one end of a transmission line.
Anti-aliasing filters are used in cascade with instrument transformers (IT) as part of protective relay data acquisition systems for providing input signals to fault locators.
Standard one-sided impedance-based fault locators, included in the digital protection systems [2], [3], [4], [8] compute the distance to the fault using the symmetrical components of line impedance.
Due to IT and anti-aliasing filters transient responses, the fault locators input data may not be replicas of the power network voltage and current waveforms, and incorrect information may be transferred to protection devices.
In this work, a novel fault-locator technique for two- and three-terminal power transmission lines is introduced.
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