| > The singular property presented can't even be extrapolated to relate to both things. Both things aren't equally important. The energy capacity of the battery isn't provided for the same reason that coal plants don't specify the size of their coal piles or hydro plants don't specify the potential energy storage capacity of their reservoirs. Power is the most relevant property to the real time operation of the grid, and the specification of power (and not energy). The grid operators need to know how much power a battery (or other generation source) can provide, and for how long. That tuple <power, duration> what any dispatchable energy source ultimately bids onto the real-time electricity markets. The energy storage capacity of a battery is a function of what energy market it is designed to fit into. For example, a battery that primarily functions in the frequency regulation market (modulation of supply and demand every few seconds) doesn't need a lot of storage capacity, but needs high power output. In contrast, a battery that shifts supply over the course of a single day might need more capacity (4 hours). From the grid operator's perspective, the storage capacity is an implementation detail of the particular power source, or at least a secondary consideration. |
For ERCOT this is fixed as a hard requirement so there's no point in specifying the time-- it's all going to be the same. For example:
> Fast Frequency Response (FFR) – subset of RRS
> – Must be capable of sustaining its required response for at least 15 minutes (if necessary)