Earlier quoted context omitted.
I assume battery based grid power stations like the Tesla one in Australia are amongst the best in class to help in this kind of crisis situation? Compared to the gaz turbine the system it is simpler (no mehanical/heat/fluid parts) and depending on design will likely never be completely off since made of dozens or hundreds of independant equipement (batteries and inverters). Thanks for the article and comment!
Yes, batteries are very fast acting, but that battery in South Australia is only 100MW and the grid lost over 1400 MW. https://www.news.com.au/technology/innovation/inventions/eve... Batteries have a lot of potential, but they are currently small in capacity.
I hear this kind of misconception fairly often and so it is worth noting that you don't need 1400 MW of battery to protect from this event.
The initial 735 MW drop happened, as I read TFA, when a major generating source took itself offline as a result of the frequency disturbance. The later generator drops are cascades of the frequency disturbance earlier in time.
If a suitable battery had been present and reacting in milliseconds it could have stabilized the frequency enough, for just the very short period required, to avoid the whole generator trip in the first place. Thus you can use much smaller amounts of fast-response frequency support to avoid much bigger drops. This is how batteries can pay for themselves so quickly when placed in the right topologies w.r.t to the grid demand and generation resources.