Method for evaluating the faulted sections and states in a power

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364492, 395 21, 395 22, G01R 3108, H02J 0000

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057127964

ABSTRACT:
The faulted sections are evaluated by calculating the measuring information resulted from the faults in various positions by the previous fault simulative calculation, introducing the resulting fault simulative measuring information into a self-organizing neural network having output elements of which number being more than that of input elements to permit the self-organizing neural network to learn the classification of the simulative measuring information, preparing an evaluation rule representing the correspondent relation between the output from the classification of the stimulative measuring information and the faulted position, thereafter introducing actual measured information into the self-organizing neural network to permit the self-organizing neural network to classify the introduced actual measured information, and evaluating the faulted section from an output classified by the self-organized neural network on the basis of the evaluation rule.

REFERENCES:
patent: 5566092 (1996-10-01), Wang et al.
patent: 5566273 (1996-10-01), Huang et al.
Karino Hitoshi, Kaneta Masahisa ,Kanemaru Kimiharu; "Improvements of Fault Location for Transmission Lines using Neural Network"; Kenki Gakkai Ronbunshi. B, 1991, vol. 11, No. 11, pp. 1215-1222, Nov. 1991.
Oura Kazutaka, Matsubara Ryoji, Yamaguchi Yuji; "Application of Kohonen's Neural Networks to Fault Location system for Overhead Transmission Lines"; Kenki Gakkai Denryoku, Enerugi Bumon Taikai Ronbunshu, 1994, vol. 5th, No. 2, pp. 581-582, 1994.
Thomas Dalstein, Bernd Kulicke; "Neural Netowrk Approach to Fault Classification for High Speed Protective Relaying" IEEE Transactions on Power Delivery, vol. 10, No. 2, Apr. 1995.
Kimiharu Kanemaru, Hitoshi Kanou, Shigehiro Toyota, masato Nishiura; "Service Experience of Al-Based Fault Location System for Overhead Powers Lines Using OPGW"; Hitachi Cable Review No. 10, pp. 13-18, Aug. 1991.

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