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The 3  International Conference
                                                        rd
                                       on Vocational Education and Technology (IConVET)
                                 Universitas Pendidikan Ganesha - Bali | 7  November, 2020
                                                              th
              DESIGN OF AUTOMATIC THREE PHASE LOAD
                BALANCING  FOR DYNAMIC ELECTRICAL
                                 INSTALLATION

                       I W Sutaya , K U Ariawan  , I G Nurhayata 1
                                 1
                                               1

          1 Electronics Engineering Department, Ganesha Education University, Bali,
                                       Indonesia

          Abstract. This paper discusses design and simulation of Automatic Three
          Phase Load Balancing in three-phase electrical installations in consumers
          with single-phase loads. This approach is a solution to many constraints of
          load imbalance that is installed three-phase source on the consumer. The
          process of changing the installation and adding loads is very difficult to do
          manually. This  load imbalance causes one phase  voltage  source to be
          overloaded while the other voltage sources are still very little loaded. An
          implementation  of  an automatic system  makes  the  electrical  installation
          dynamic so that changing installation and adding new loads will be very easy
          to do. This Automatic Three Phase Load Balancing consists of two types of
          control that communicate with each other, namely a Central Controller and
          Controller Units. The Central Controller functions as a data processor for
          overall loads. Several Controller Units function as  a connection  switch
          between phases in each load group. From the simulation results with
          MATLAB Simulink, this system can manage the loads so that a balance is
          achieved in each phase. The more the number of load groups in an electrical
          installation, the better the load balance is obtained.












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