The National Renewable Energy Laboratory has charts and reports showing US system prices per installed watt for residential solar and utility scale solar with single axis sun tracking:
https://www.nrel.gov/solar/market-research-analysis/solar-in...
In 2010, the cost-per-watt was a little more than 2 dollars higher for residential solar than for utility scale solar ($8.70 vs $6.54). In 2022, residential was still a little more than 2 dollars higher ($3.16 vs $1.06), but since system costs have plummeted, that means the ratio now favors utility scale installations much more dramatically.
You can see in the charts that "Soft Costs - Other" remains persistently high for residential solar. That includes things like permitting and inspection. A 100 megawatt solar farm requires permitting and inspection too, but it's much less cost than the 10,000 permits and inspections required for equivalent capacity distributed across residential rooftops. The other big difference evident from 2010 to 2022 is that residential solar inverter costs are still significant whereas the inverter costs have become practically invisible in 2022 for large solar farms. More aggressive price competition and increasing unit capacity have proportionally lowered the inverter costs much more for large solar farms.
The cost per megawatt hour generated is actually even more imbalanced in favor of large solar farms than these cost-per-watt charts show. You can't use solar tracking on rooftops. Solar farms with single axis tracking to follow the sun's position generate more energy per year than equivalent wattage installed in fixed positions on rooftops. Average rooftop systems are also less frequently cleaned than ground level solar farms. Not only does rooftop solar cost 3 times as much per installed watt, it also generates maybe 30% less energy per installed watt per year.