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Second, a customised modal transformation (CMT) is derived from CSA, aiming to improve impedance-based fault location methods for performance.
However, studies regarding the performance of fault location methods applied to this type of line have not been done.
This paper deals with analysis and improvement of two-terminal impedance based fault location methods for transmission lines.
Fault location methods in distribution systems are examples of how inserting of new generation sources can change the efficiency of these tools.
This paper presents a fault location algorithm which does not need to classify the fault type before location estimation unlike some fault location methods.
To assess the effectiveness of the developed approach, four two-terminal fault location methods from the literature, using both distributed parameter line model and only fault data, are considered.
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In this paper, an optical fiber fault location method based on OCDMA coding is presented, which may accurately locate branch fault at local side and enlarge dynamic range through coding gain while ensuring relatively small discrimination.
The second algorithm is a parameter-free fault location method that uses time synchronised data.
Moreover, the double-end fault location method based on traveling waves is integrated into the protection scheme to predict the accurate fault location.
This paper presents a single-ended traveling wave-based fault location method for segmented high voltage DC (HVDC) transmission lines; an overhead line combined with an underground cable.
According to the obtained results, the worst performance of the fault location method is obtained in the case of distortions caused by current transformer saturation.
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