Establishing regulations for grid connection of inverters for communication base stations

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FAQs 6

What are the requirements pertaining to inverter-based resources?

Elements of these requirements pertaining to inverter-based resources include, but are not limited to, the following: Any transmission line(s) connecting the inverter-based resource from the substation transformer to the POI should be modeled to the same level of accuracy that is used by the TO for other similar BPS elements.

What is inverter-based resource response to grid conditions?

Inverter-based resource response to grid conditions is dominated by advanced controls programmed into the inverters and plant-level controls. These controls are configurable and capable of providing similar essential reliability services (ERSs) as synchronous generating resources.

What is grid forming inverter capability?

Grid forming inverter capability can be generally described as the capability of an inverter to support BPS operation under normal and emergency conditions without relying on the characteristics of synchronous machines.

What are grid codes & standards?

The grid codes and standards keep modifying the requirements, upto individual harmonic voltages and currents to maintain the power quality. Active and reactive power control are needed, as the renewable energy sources should be controllable and correspond to system commands (ISO/TSO/DSO).

How should a go programmable inverter-based resource be able to change grid conditions?

The dynamic response of inverter-based resources should be programmable by the GO in coordination with the inverter manufacturer to enable changes based on changing grid conditions once installed in the field. Large changes in terminal voltage will likely cause the inverter to reach a current limit.

Are BPs-connected inverter-based resources better than low voltage connected distributed energy resources?

BPS-connected inverter-based resources may cause less voltage fluctuation (flicker) concerns than low voltage connected distributed energy resources due to a higher reactance-to-resistance (X/R) ratio in HV/EHV systems, and the capability of BPS-connected inverter-based resources to automatically control voltage.

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