As an alternative method you can register PLECS with a specific MATLAB installation using the MATLAB Path Browser or by directly editing the file pathdef.m in the directory matlabroot/toolbox/local/. This method may be appropriate if PLECS will be used by multiple users sharing the same computer. You need to add the PLECS directory and its subdirectory demos to the MATLAB search path.

If you want to keep different versions of PLECS installed in parallel on one computer, you must ensure that only one version is on your MATLAB path at any time during a MATLAB session. Otherwise, loss of data may occur. Before changing the MATLAB path, be sure to clear the currently loaded PLECS module by entering plecsclear at the MATLAB command prompt. As an additional precaution you should restart MATLAB after the change.


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What I think is happening:the "plecs('simulate', ...)" commands are running individually causing 2 separate simulations to be executed. I don't know how I would solve this issue, but would I have to combine the Kp and Ki structures together and use that as an argument of "plecs('simulate', ...)" function?

With every call to plecs('get', 'mdl/circuit', 'Topology'), PLECS will replace any variables in the model with their associated value in the workspace. In this was, the inductance of an inductor can be set to L in the circuit model, then if the calling MATLAB script first defines L=1e-6, the resulting state space matrices will be evaluated with a one microHenry inductance. The same holds of other parameters of circuit model elements (passive values, sources, MOSFET resistances, etc.)

The LiFePO4 battery model has been developed in the PLECS toolbox. The model of electrochemical cell has been created on the basis of the characteristics of Li-ion battery determined experimentally. The Winston Battery Cell LYP40AHA has been used in the study. Battery model has been developed to reflect the battery voltage during discharge at various condition. Voltage characteristics take into account the change in battery voltage caused by state of charge, temperature and current. The model is dynamic, i.e. it reflects the transient state of battery output voltage. More details on battery model is presented in 

Performed studies allow to presume that the battery model adequately reflects the LiFePO4 behaviour in the ranges of:

- temperature 0C - 40C

- cell voltage 2.5V - 3.6V

- C-rate current 0-2C

The parameterisation of the model allows to specify a battery pack with a defined cell capacity and number of cells in series. be457b7860

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