Are Solar Panels Worth It in Indiana? 2026 Cost & Payback

A typical Indiana household uses about 950 kWh a month and pays 17.03¢ per kWh — roughly $162 a month. Covering that takes a 8.2 kW system costing about $24,075, which pays for itself in about 18 yr 10 mo.

Solar payback calculator — Indiana

Adjust any input to see how the payback period moves.

Pays for itself in

18 yr 10 mo

from switch-on

25-year net gain

$10,090

after paying it off

System size

8.2 kW

Up-front cost

$24,102

Year 1 savings

$1,069

Year 1 output

11,415 kWh

No federal tax credit applied. The 30% residential credit (IRC §25D) ended for purchases made after 31 December 2025. Leases and PPAs fall under a different provision claimed by the installer.

The numbers behind it

Average electricity rate17.03¢ / kWh
Peak sun hours per day4.81 hours
Annual yield per kW installed1,392 kWh
Typical monthly usage950 kWh
System size needed8.2 kW
Installed cost per watt$2.94
Gross system cost$24,075
Federal tax creditNot available (expired for 2026 purchases)
Net up-front cost$24,075
First-year output11,400 kWh
First-year savings$1,068
Net meteringNo statewide net metering
Payback period18 yr 10 mo
25-year net gain$10,072

Net metering in Indiana

Indiana has no statewide retail net metering, so exported power earns only a low avoided-cost rate. Payback depends heavily on consuming your own production rather than exporting it.

Common questions

How much do solar panels cost in Indiana?

At around $2.94 per watt installed, the 8.2 kW system a typical Indiana home needs works out to roughly $24,075 before any incentives. The 30% federal residential credit no longer applies to systems purchased after 31 December 2025, so that is also the net price.

How long do solar panels take to pay for themselves in Indiana?

About 18 yr 10 mo. That accounts for panel output falling roughly 0.5% a year and utility rates rising around 2.5% a year, which pull the answer in opposite directions.

Does Indiana have net metering?

Indiana has no statewide retail net metering, so exported power earns only a low avoided-cost rate. Payback depends heavily on consuming your own production rather than exporting it.

How much will I save over 25 years in Indiana?

Roughly $10,072 after the system has paid for itself — about 42% return on the up-front cost. Savings are larger if electricity prices rise faster than 2.5% a year.

Is Indiana sunny enough for solar?

Indiana averages about 4.81 peak sun hours a day, and a well-oriented array there yields roughly 1,392 kWh per kW installed each year. Sunlight matters less than most people assume — electricity price is the bigger driver, which is why cloudy, expensive states often beat sunny, cheap ones.

How we calculate this

We model 25 years one year at a time rather than dividing cost by first-year savings. Panel output falls 0.5% each year and electricity prices rise 2.5% each year, so the payback figure reflects both.

Production uses the modelled AC yield for Indiana rather than a flat efficiency factor. A peak-sun-hours approximation runs about 9% high, which is enough to make payback look a year faster than it is.

We assume 40% of generation is used in the home as it is produced, with the rest exported and credited according to the state's net metering rules.

Data vintage: Electricity: EIA Electric Power Monthly Table 5.6.B (residential, May 2026 YTD). Solar resource: PVGIS v5.3 (EU JRC), ERA5 2005-2023. Gasoline: AAA state averages. Natural gas: EIA residential by state. Heating degree days: NOAA CPC population-weighted normals. Retrieved 2026-08-03/04. Install costs, household usage, net-metering status, annual mileage, time-of-use spreads and outage hours remain estimates.

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