Describe the current behavior
Multi-segment droop control mode is now an important feature of contingency remediation for voltage source converters. We want to model it in load flow computations. The data is already modeled in PowSyBl Core.
Describe the expected behavior
When the control mode of a voltage source converter is set to P_PCC_DROOP, the load flow computations take into account the droop curve for the relationship between DC voltage and converted power.
Describe the motivation
Security analysis.
Extra Information
For now, control mode is called P_PCC_DROOP. The idea was to get a different behavior for security analysis (droop) and regular load flow. This looks confusing. Instead of this behavior, the user will have to set the droop control mode explicitly. The name of the identifier will be changed in PowSyBl in a later activity.
Describe the current behavior
Multi-segment droop control mode is now an important feature of contingency remediation for voltage source converters. We want to model it in load flow computations. The data is already modeled in PowSyBl Core.
Describe the expected behavior
When the control mode of a voltage source converter is set to
P_PCC_DROOP, the load flow computations take into account the droop curve for the relationship between DC voltage and converted power.Describe the motivation
Security analysis.
Extra Information
For now, control mode is called
P_PCC_DROOP. The idea was to get a different behavior for security analysis (droop) and regular load flow. This looks confusing. Instead of this behavior, the user will have to set the droop control mode explicitly. The name of the identifier will be changed in PowSyBl in a later activity.