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Power, 1-ph
The Power, 1-ph component computes the active power (P), in watts, and the reactive power (Q), in vars, of a voltage-current pair at the specified fundamental frequency.
The output is held constant to the specified Initial active power and Initial reactive power values for one cycle of the specified fundamental frequency.
Symbol
Mask Parameters
Name | Description | Unit | Variable = {Possible Values} | |
---|---|---|---|---|
Description | Use this field to add all kinds of information about the component | Description = {'string'} | ||
Fundamental frequency | Fundamental frequency used for the calculation of the active power (P) and the reactive power (Q). This value cannot be modified during the simulation | Hz | Fnom = { [0, 1e12] } | |
Initial active power | Initial active power value of the magnitude of the output signal for the first simulation cycle. This value cannot be modified during the simulation | W | Pinit = { [-1e64 1e64] } | |
Initial reactive power | Initial reactive power value of the magnitude of the output signal for the first simulation cycle. This value cannot be modified during the simulation | Var | Qinit = { [-1e64 1e64] } |
Input/Output Signals
Name | Description | Type |
---|---|---|
V | Single-phase voltage signal | Input |
I | Single-phase current signal | Input |
P | Active power signal | Output |
Q | Reactive power signal | Output |
Sensor Descriptions
Name | Description | Unit |
---|---|---|
V | Single-phase voltage input signal | V |
I | Single-phase current input signal | A |
P | Active power signal | W |
Q | Reactive power signal | Var |
Internal Circuit of the Component
Example model
This example demonstrates the usage of 1-phase power block. A 1-phase 240V, 60Hz source connected to a 3kW and 0.6kVar load is demonstrated.
Note that the following demo requires that users edit the ScopeView template, and replace the existing .oprec data source with the data generated during the simulation.
Simulation results
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