1 Citation (Scopus)

Abstract

This paper presents the steady state performance of active and reactive power flow between grid and inverter as voltage controller through a link inductor in distributed generating system. The inverter is synchronized and connected to the network through a link inductor that connecting the output terminal of inverter with the grid. In this paper, the design value of a link inductor between inverter and grid is also included. The design value of the link inductor is performed on two conditions, e.g., at the power angle 5 ° and approximately 90°. The link inductor value that gives the best performance on the system for the household scale DG application with 5 kW capacity is obtained at the small power angle 5°. With the appropriate design value of the link inductor in distributed generating system is presented in this paper, the best performance on the system can be obtained.

Original languageEnglish
Title of host publicationICAMIMIA 2015 - International Conference on Advanced Mechatronics, Intelligent Manufacture, and Industrial Automation, Proceeding - In conjunction with Industrial Mechatronics and Automation Exhibition, IMAE
PublisherInstitute of Electrical and Electronics Engineers Inc.
Pages18-22
Number of pages5
ISBN (Electronic)9781467373463
DOIs
Publication statusPublished - 8 Jul 2016
Event2015 International Conference on Advanced Mechatronics, Intelligent Manufacture, and Industrial Automation, ICAMIMIA 2015 - Surabaya, Indonesia
Duration: 15 Oct 201516 Oct 2015

Publication series

NameICAMIMIA 2015 - International Conference on Advanced Mechatronics, Intelligent Manufacture, and Industrial Automation, Proceeding - In conjunction with Industrial Mechatronics and Automation Exhibition, IMAE

Conference

Conference2015 International Conference on Advanced Mechatronics, Intelligent Manufacture, and Industrial Automation, ICAMIMIA 2015
Country/TerritoryIndonesia
CitySurabaya
Period15/10/1516/10/15

Keywords

  • active and reactive power flow
  • inverter
  • link inductor
  • steady state performance

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