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Load Flow, Load Loss and Short Circuit Analysis of The Third Thermal Power Plant’s Electrical Supply System

2022/06/13 by Battulga Munkhbaatar, Perenlei Khurelbaatar, Munkhbaatar, Battulga +7
Energy · Engineering · #High-Voltage Power Transmission Systems #Power Systems and Renewable Energy #Smart Grid and Power Systems

paper · pdf · doi:10.14464/ess.v9i1.508

openalex publication_date 2022/06/13 · openalex created_date 2025/10/10 · openalex updated_date 2026/06/11

Abstract

The third thermal power plant is one of the largest in Mongolia, generating about 30% of Mongolia's electricity and more than 60% of Ulaanbaatar's thermal energy. Although Mongolia's electricity consumption has grown steadily, no new power plants have been built to meet this increased demand. This increase in load and the intermittent characteristic of renewable energy have adversely affected thermal power plants' sustainability. Therefore, to study how the static and dynamic transition process of the power plant is affecting the operation, the 110kV 35kV 10kV 6kV general circuit scheme was fully modelled on Powerfactory software to analyse the performance of the load flow, load loss, voltage level, determination of the loading condition, balanced and unbalanced short circuit calculation results are demonstrated.

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