In recent days, the electrical infrastructure has been under stressful conditions largely due to population growth, modern lifestyles and electric transportation. Renewable energy integration, smart metering, automatic voltage regulators, flexible AC transmission systems, capacitor placement, fast feeders, network reconfiguration, etc., increase network performance and reduce power loss. In this work, the combined integration of capacitor and distributed transformer (DTC) is carried out to improve the complete performance of the network with least investment and reduced CO2 emissions for sustainable and unswerving performance of the power grids.

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Combined Placement of Distributed Transformers and Capacitors in Electrical Networks

  • Chandrashekhar S. Patil,
  • Avinash Deshpande,
  • Rudresh B. Magadum,
  • G. B. Ramesh,
  • S. J. Rudresh,
  • Sateesh N. Dodamani

摘要

In recent days, the electrical infrastructure has been under stressful conditions largely due to population growth, modern lifestyles and electric transportation. Renewable energy integration, smart metering, automatic voltage regulators, flexible AC transmission systems, capacitor placement, fast feeders, network reconfiguration, etc., increase network performance and reduce power loss. In this work, the combined integration of capacitor and distributed transformer (DTC) is carried out to improve the complete performance of the network with least investment and reduced CO2 emissions for sustainable and unswerving performance of the power grids.