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RESEARCH PRODUCT

Voltage Security Assessment by Using PFDT and CBR Methods in Emerging Power System

N. P. PatidarMohan KolheS. B. WarkadS. R. NandanwarVikash Kumar Singh

subject

Structure (mathematical logic)Computer science020209 energyEmphasis (telecommunications)Decision treeProbabilistic logicProcess (computing)02 engineering and technologyAC powerReliability engineeringElectric power system0202 electrical engineering electronic engineering information engineering020201 artificial intelligence & image processingCase-based reasoning

description

Abstract This paper exhibits varied methods for voltage security assessment in a restructured power system. This paper primarily lays emphasis on two methods that are Probabilistic Fuzzy Decision Tree (PFDT) and Case Based Reasoning (CBR). In PFDT, Decision Tree plays an integral role for classification of system. For further classification of power system security, an algorithm is developed to categorise the buses which trouble the security most. After classification of system, by using minimum amount of load curtailment of voltages on buses which made insecure to secure load. Optimization of load is done by curtailing reactive power from insecure buses. In CBR, old cases from database are used for solving the problems of new case. Hence, PFDT is re-trained in system during real operation for solving the new operating states which are found insecure in CBR approach. In case of emergency or a critical situation, structure of the power system networks changes but in such a condition CBR also gives better results by using re-training process. After re-training in real-time, CBR revises its database by accepting new conditions and stored for their further uses. These two methods are analysed on the standard test system i.e. IEEE-30 Bus along with desired accuracy.

https://doi.org/10.1016/j.egypro.2018.06.023