In the modern world, every industry is expanding which is putting tremendous stress on present electricity, generation, transmission and distribution networks, power system and protection systems. In turn electricity networks are facing challenges to meet this new load and maintain power quality. Distributed generation (DG) integration plays a vital role to meet this requirement which dispatches power at distribution voltage level. Despite the many benefits of distributed generation, its sizing and placement are always challenging. In this article, optimal sizing and placement of distributed generation is examined for radial distribution networks utilizing voltage sensitivity methods. Proposed method is tested on IEEE 15 bus systems.

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Optimal Sizing and Allocation of Multiple Distributed Generation

  • Avinash Deshpande,
  • Sateesh N. Dodamani,
  • Rudresh B. Magadum

摘要

In the modern world, every industry is expanding which is putting tremendous stress on present electricity, generation, transmission and distribution networks, power system and protection systems. In turn electricity networks are facing challenges to meet this new load and maintain power quality. Distributed generation (DG) integration plays a vital role to meet this requirement which dispatches power at distribution voltage level. Despite the many benefits of distributed generation, its sizing and placement are always challenging. In this article, optimal sizing and placement of distributed generation is examined for radial distribution networks utilizing voltage sensitivity methods. Proposed method is tested on IEEE 15 bus systems.