GA-CSM based optimized clearances for the reduction of occupational exposure in EHV substation☆
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Date
2023
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Publisher
Elsevier Ltd
Abstract
The magnitude of the electric field (E-field) in a 765 kV substation is reduced by altering the conductor clearances in view of the occupational exposure limits. Multi-objective genetic algorithm (GA) along with the charge simulation method (CSM) is utilized in arriving at the optimal clearances of the substation conductors. An EHV substation is modeled with the dimensions and the clearances as in the actual layout of a substation. The E-field results obtained using the finite-line based modeling and infinite-line based modeling of conductors, are compared in terms of the model accuracy and the computational time. The advantages of using the infinite-line based CSM model in view of the occupational exposure is detailed. With the proposed GA-CSM routine, the maximum value of the E-field in the substation is reduced to 10 kV/m (from the existing value of 13 kV/m). The proposed method is used with the existing topology and the best possible transposed topology to obtain the modified layouts. A novel EHV substation layout with different ground clearances for the inner bays and the outer bays is presented. The GA-CSM routine proposed in this work is applicable to any EHV substation with the multiple conductor arrangements. © 2022
Description
Keywords
Electric fields, Electric substations, Topology, % reductions, Based modelling, Charge simulation methods, Conductor clearances, EHV substation, Exposure level, ICNIRP, Occupational exposure, Occupational Exposure Limits, Substation, Genetic algorithms
Citation
Electric Power Systems Research, 2023, 214, , pp. -
