Singlediodeparams

Wrapper for SAM Simulation Core model: cmod_singlediodeparams.cpp

Input Consistency Warning

As described in Possible Problems, some input parameters are interdependent but the equations that enforce consistency are not available in this PySAM module. Therefore, the onus is on the PySAM user to check that interdependencies are correctly handled. The variables which may require additional logic include:

Provided for each of these inputs is a list of other inputs that are potentially interdependent.

Creating an Instance

Refer to the Initializing a Model page for details on the different ways to create an instance of a PySAM class.

Singlediodeparams model description

Singlediodeparams

PySAM.Singlediodeparams.default(config) → Singlediodeparams

Use default attributes None

PySAM.Singlediodeparams.from_existing(data, optional config) → Singlediodeparams

Share underlying data with an existing PySAM class. If config provided, default attributes are loaded otherwise.

PySAM.Singlediodeparams.new() → Singlediodeparams
PySAM.Singlediodeparams.wrap(ssc_data_t) → Singlediodeparams

Use existing PySSC data

Warning

Do not call PySSC.data_free on the ssc_data_t provided to wrap

Functions

class PySAM.Singlediodeparams.Singlediodeparams

This class contains all the variable information for running a simulation. Variables are grouped together in the subclasses as properties. If property assignments are the wrong type, an error is thrown.

assign(dict) → None

Assign attributes from nested dictionary, except for Outputs

nested_dict = { 'Single Diode Model': { var: val, ...}, ...}

execute(int verbosity) → None

Execute simulation with verbosity level 0 (default) or 1

export() → dict

Export attributes into nested dictionary

unassign(name) → None

Unassign a value in any of the variable groups.

value(name, optional value) → Union[None, float, dict, sequence, str]

Get or set by name a value in any of the variable groups.

SingleDiodeModel Group

class PySAM.Singlediodeparams.Singlediodeparams.SingleDiodeModel
assign() → None

Assign attributes from dictionary

SingleDiodeModel_vals = { var: val, ...}

export() → dict

Export attributes into dictionary

Adj_ref

OC SC temp coeff adjustment [%]

Required: True

Type:float
I

Irradiance [W/m2]

Required: True

Type:float
Il_ref

Light current [A]

Required: True

Type:float
Io_ref

Saturation current [A]

Required: True

Type:float
Rs_ref

Series resistance [ohm]

Required: True

Type:float
Rsh_ref

Shunt resistance [ohm]

Required: True

Type:float
T

Temperature [C]

Required: True

Type:float
a_ref

Modified nonideality factor [1/V]

Required: True

Type:float
alpha_isc

Temp coeff of current at SC [A/’C]

Required: True

Type:float

Outputs Group

class PySAM.Singlediodeparams.Singlediodeparams.Outputs
assign() → None

Assign attributes from dictionary

Outputs_vals = { var: val, ...}

export() → dict

Export attributes into dictionary

Il

Light current [A]

Type:float
Io

Saturation current [A]

Type:float
Rs

Series resistance [ohm]

Type:float
Rsh

Shunt resistance [ohm]

Type:float
a

Modified nonideality factor [1/V]

Type:float