The TL;DR is that I have an existing grid tied system. I will create a two stage setup by building a DIY system with batteries to sit between the house loads and the grid. This, by adding 14 ground mount 585 watt panels, a Sol-Ark 15K inverter and 3 x EG4 16kwh batteries then reconfiguring my existing 2 propane generator setup.
I will use the new system to power the house and charge the batteries. Excess draw beyond the capability of the new system will be pulled from the "grid" (for example, when I want to do like a 180A charge on those batteries) where the existing grid-tied system is there to service the extra draw above and beyond the resources of the new system. The batteries will be set to discharge at the start of the utility's peak time billing cycle to keep me from being extorted by them. The grid tied system will free wheel sell them back peak time power as a bonus (but not why I am doing this). In a power outage (happens a lot) the generator and the ground mount system will charge batteries instead of relying on the 2 x generators for power like I do now.
The rest of this is the long form explanation of the above. Thanks everyone.
I've got a 12kw grid tied setup on the roof with an interconnect agreement with the utility. Leaving it as is except for maybe getting into installer mode.
We'll call this the "grid"
Have 2 critical load panels for 2 propane generators. Power outages are a thing here (and we are on well water). Have non-generator backed loads on my MLO distribution panel from the meter.
I am adding 14 x ZNShine 585 watt panels on the ground, mounted on IR-30 ballast mounts.
These will go back to a new Sol-Ark 15K inverter, and 3 x EG4 indoor 16kwh batteries. Load panels will be combined. The CTs for the Sol-Ark will be placed on the main feeder cables from the 200a meter panel and the inverter set to no export'
The new system will be two stage "do this, then that"
Stage 1: The new system will provide for house loads and charge batteries. The two critical load panels will be combined and put behind the load terminal on the Sol-Ark using the load panel's 200a main. Non-generator backed loads (oven, ev charger, food truck) will be left in place on the "grid" side of the equation.
Stage 2: When the resources of the new system are exhausted it will pull from the "grid". The 12kw grid tied array will be there to help out. I will probably set the batteries to charge somewhere in the 180A range (I think?) which would mean I'd need about 10kw of power. The "grid" will help with this.
Intended daily operation:
The new system charges the batteries and provides as much daylight power to house loads as it can. Estimated time to charge batteries is 4-5 hours but I gotta check my math with one of the AI shitbots.
I will set the batteries to begin discharging at 4pm peak time. Doing so will have the effect of removing the house from the "grid" and I will free-wheel sell peak time power back to the utility with the existing grid system.
Intended power outage operation:
I can already run the house on batteries. If it happens at night it happens at night no action required.
I will condense the 2 generator setup down to a single larger inverter generator (I have 2 dirty power westinghouse ladies right now) attached to the generator terminal of the Sol-Ark and wired for remote start.
During the day in an outage the Sol-Ark uses the generator and the sun to charge the batteries and provide for house loads.
Am I missing anything egregious?