![]() ![]() They have run the SMIB system without AVR and PSS controllers and determined Tutorial named as “SimulinkInterfaces-1” (page 3 and 4) provided by BCP. The writer of this documentĭid not try to go through the details of this step. Variable E FD can be calculated with NEPLAN. Initial values of the input variables V T and f and of the output The Matlab code for this function is as follows:įunction = GetInitialValues_simple_exciter() So the interface MATLAB function for the initial values is called GetInitialValues_simple_exciter.m. In our case, as our model's name is simple_exciter.mdl. The initialization of the SIMULINK model has to be performed by the user and the calculated initial values of the output and the model states must be interfaced to NEPLAN using a MATLAB function named GetInitialValues_modelname.m. One of the major issues in simulating a SIMULINK model with NEPLAN is the initialization of the SIMULINK model. We want to controlįigure 8: simple_exciter.mdl, the SIMULINK diagram of the AVR and PSS Is a synchronous generator connected to the grid (Fig.1). Here we have used a sample grid system where there Our objective is to use a SIMULINK model in NEPLAN Some problems from his experience and some suggestions. All these methods will be discussedĪt the end of this report the writer describes ![]() dll file can be created by using MATLABĬommand, or, it can be created by DSAR. dll files to create user defined controlīlocks in NEPLAN. Interfaces in MATLAB and NEPLAN, definition and initialization of the models,Įtc. There are built in control modules in NEPLAN and SIMULINK dll files that can be incorporated in userįirst we will discuss about the incorporation This report focuses on how to incorporate SIMULINK models in This report is a guide on how to use control ![]()
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