SIMULASI PENGGUNAAN KOMPENSATOR DAYA REAKTIF SVC MERS PADA OPERASI PARALEL GENERATOR INDUKSI

In the modern era, power has become a major requirement and provide a very important role in social life as well as in the development of various economic sectors. The need for backup power is critical to be prepared. Induction machine can be operated as a motor and generator. Induction generators w...

Full description

Bibliographic Details
Main Authors: , HARRIS INDRA L., , Dr. Eng. F. Danang Wijaya, S.T., M.T.
Format: Thesis
Published: [Yogyakarta] : Universitas Gadjah Mada 2013
Subjects:
ETD
Description
Summary:In the modern era, power has become a major requirement and provide a very important role in social life as well as in the development of various economic sectors. The need for backup power is critical to be prepared. Induction machine can be operated as a motor and generator. Induction generators widely used on medium-capacity plants with renewable energy sources such as micro-hydro, wind, biomass and others. Induction generators are widely used in plants such as a relatively low cost, easy maintenance and are found in the market. Induction generator parallel operation is to do to provide an induction generator capacity is large enough. However, this parallel operation has not met reasonable and less known to the general public. This study was conducted with a view to provide exposure to the operating characteristics of parallel induction generator and to provide practical steps that can be implemented in daily life - today. The study was conducted with the induction generator parallel operation simulations using PSIM 9. Parallel compensator is implemented on a parallel circuit of induction generator instead of fixed capacitors. It is necessary to use modern parallel compensator that is dynamic named by static VAR compensator with magnetic energy recovery switch (SVC-mers) which is one of the new technologies in parallel compensator. The series is equipped with automatic control using feedback from the output as a trigger switch-on the IGBT in SVC MERS. Simulation results are then analyzed according to the basic theory related. Induction Generator 2 pieces are each worth 1.5 kW 380 V, can be operated in parallel with the use of SVC MERS capacity of 2.4 KVAR. Its use in the current situation is very flexible change of load. SVC-MERS can stabilize the terminal voltage of the induction generator albeit one that paralleled decreased speed. The simulation results were analyzed according to the basic theory related. The final results of scientific research on the characteristics of writing parallel operation of induction generator with SVC MERS.