Title :
A multi-layer power transformer life span evaluating decision model based on information fusion
Author :
Wei Chao ; Lu Yun-Cai ; Chen Bi-jun ; Wang You-yuan
Author_Institution :
JiangSu Electr. Power Co. Res. Inst., Jiangsu, China
Abstract :
The operational reliability of power transformers directly affects the stable and reliable power supply of the power system. According to the available data such as condition assessment, routine test results and maintenance records, a hierarchical architecture and information fusion technology based power transformers life estimation model is presented. Firstly, the model takes advantage of the fault mechanism and the knowledge fitting laws of export system to analyze association property between characteristic parameters and aging information. Then it collects the information representing the insulation aging, reclassify them into several types, and build up a multi-objective evaluating model of power transformers life estimation. After the hierarchy of model is confirmed, we fulfill single characteristic parameter based life estimation and probability density of failure by means of threshold value diagnosis, fuzzy inferences, expert knowledge system, etc. The value of parameters, illation process and evaluation results of the estimation are coded and saved in the database of expert system and enrich the expert knowledge base through deep data mining technology. According to the established evaluation hierarchical architecture, single characteristic parameter models are integrated into the evaluating index system and multi-objective model by analytic hierarchy process (AHP), which can determine the weights at all levels. The multi-parameter power transformer life span evaluating decision model based on information fusion is established so far. The lifetime characteristic parameters from all kinds of sources are integrated to serve as the base layer of the multi-layer decision model, which enhances the efficiency and reliability of this model. It provides a reference for drafting optimal maintenance scheme, achieving the aim of condition based maintenance and power utilities life prediction.
Keywords :
analytic hierarchy process; data mining; decision theory; estimation theory; expert systems; fuzzy reasoning; maintenance engineering; power engineering computing; power transformer insulation; power utilisation; probability; AHP; aging information; analytic hierarchy process; association property analysis; deep data mining technology; evaluating index system; expert knowledge system; fault mechanism; fuzzy inference; information fusion technology; insulation aging; knowledge fitting law; maintenance scheme; multilayer decision model; multiobjective evaluating model; multiparameter power transformer life span evaluation; operational reliability; power supply reliability; power supply stability; power system reliability; power system stability; power utility; probability density of failure; single characteristic parameter based life estimation model; threshold value diagnosis; Data models; Feature extraction; Insulation; Maintenance engineering; Power transformer insulation; Reliability; hierarchical architecture; information fusion; life estimation; power transformer;
Conference_Titel :
High Voltage Engineering and Application (ICHVE), 2014 International Conference on
Conference_Location :
Poznan
DOI :
10.1109/ICHVE.2014.7035506