Net Metering Savings Calculator — Self-Consumption vs. Export Split, Full Retail NEM vs. NEM 3.0 Net Billing Tariff vs. Avoided Cost, Monthly Seasonal Production, Annual True-Up Credit Banking, and 10-Year Savings Projection
The only net metering calculator separating what you self-consume (valued at full retail rate) from what you export (valued at your utility’s net metering policy rate), with monthly seasonal production variation, annual credit rollover banking, and a 10-year savings table showing how rising electricity rates increase your solar savings every year.
⚡ Net Metering Savings Calculator
📈 Net Metering Savings Results
Enter your system size, net metering policy, self-consumption rate, and electricity rate — then click Calculate Net Metering Savings for monthly savings, annual true-up, and 10-year projection.
Net Metering Savings Calculator — The Critical Difference Between Self-Consumption and Exporting Solar Power
Every solar homeowner needs to understand one fundamental distinction that most net metering calculators get completely wrong: a kilowatt-hour you consume yourself is worth more than a kilowatt-hour you export to the grid — sometimes dramatically more. When your solar panels produce electricity while you’re home running the AC, dishwasher, or EV charger, that self-consumed electricity replaces power you would have bought at full retail ($0.13-0.35/kWh depending on state). But when your panels produce excess power at noon while you’re at work, that exported electricity is only credited at whatever your utility’s net metering rate is — which could be as low as $0.04/kWh under California’s NEM 3.0 Net Billing Tariff.
The difference in savings is not trivial. A 10 kW system in California producing 14,000 kWh/year under NEM 2.0 (full retail credits) generated approximately $1,820 in annual savings. The same system under NEM 3.0 (export credits around $0.05/kWh) with 40% self-consumption generates approximately $800 in annual savings — a 56% reduction in solar value. Understanding your self-consumption rate and net metering policy is therefore the single most important variable in calculating your real solar savings.
US Net Metering Policy Comparison — Full Retail NEM vs. NEM 3.0 vs. Avoided Cost
| Policy Type | Export Credit Rate | States / Utilities | Impact on 8 kW System (3% self-consumption) |
|---|---|---|---|
| Full Retail NEM (NEM 1.0 / 2.0) | Full retail rate (~$0.13-0.35/kWh) | Most US states — TX (some), NY, NJ, MA, CO, AZ, NV, IL, NC, most others | $1,200-2,500/yr savings depending on state retail rate |
| CA NEM 3.0 / Net Billing Tariff | Avoided Cost: ~$0.04-0.08/kWh for exports (vs. retail ~$0.30 SCE) | California: PG&E, SCE, SDG&E (systems installed after Apr 15, 2023) | Dramatically reduced export value — battery storage becomes essential to shift export to peak TOU hours |
| Avoided Cost / Wholesale | $0.03-0.08/kWh | Florida Power & Light, Duke Energy Florida, Georgia Power, some TX co-ops | Export value is 25-60% lower than retail — self-consumption becomes critical |
| Buy-All / Sell-All | Wholesale rate ($0.03-0.06/kWh) | Some rural electric cooperatives, Dominion (some markets) | All solar sold to utility at wholesale; all consumption purchased at retail — often poor economics |
| Virtual Net Metering | Retail or avoided cost | Community solar in MA, NY, IL, CO, MN | Credits appear on bill without rooftop installation — varies widely by program |
Three Real US Net Metering Savings Examples
Example 1: Austin, TX — 9 kW System, Avoided Cost Net Metering, Flat Rate
An Austin homeowner installs a 9 kW solar system. Austin Energy uses an avoided cost net metering structure: self-consumed kWh saves the full retail rate ($0.109/kWh), but exported kWh is only credited at Austin Energy’s “Value of Solar” tariff (~$0.097/kWh — actually better than most avoided cost utilities). Annual home usage: 14,400 kWh. Self-consumption: 40%.
| Component | Calculation | Annual Value |
|---|---|---|
| Annual production | 9 kW x 5.2 hrs x 365 | 17,082 kWh |
| Self-consumed (40%) | 6,833 kWh x $0.109/kWh retail | $745 |
| Exported (60%) | 10,249 kWh x $0.097/kWh VOS | $994 |
| Annual pre-solar bill | 14,400 kWh x $0.109/kWh | $1,570 |
| Annual savings | $745 + $994 (net) | ~$1,350/yr |
| Bill reduction | $1,350 / $1,570 | ~86% |
Example 2: San Diego, CA — 7 kW System, NEM 3.0 Net Billing Tariff, High Retail Rate
A San Diego homeowner installed 7 kW solar in June 2023, falling under NEM 3.0. SDG&E’s export credit rate is approximately $0.08/kWh on average across the day. The homeowner also has a Tesla Powerwall for battery storage, boosting self-consumption to 75%. SDG&E retail rate: $0.44/kWh (some of the highest in the US). Annual usage: 10,000 kWh.
| Scenario | Self-Consumption | Annual Savings | Battery Impact |
|---|---|---|---|
| No battery (NEM 3.0) | 35% self-use | ~$1,350/yr | Baseline |
| With Powerwall (NEM 3.0) | 75% self-use | ~$2,450/yr | +$1,100/yr extra savings |
| NEM 2.0 (for comparison) | 35% self-use | ~$3,100/yr | NEM 3.0 cut savings by 56% |
Example 3: Burlington, VT — 6 kW System, Full Retail NEM, Net Metering with Annual True-Up
A Burlington homeowner installs 6 kW solar. Vermont has full retail net metering through Green Mountain Power. The key challenge: Vermont has extreme seasonal variation — July produces 3x more solar than December. Annual home usage: 9,500 kWh. Self-consumption: 40%.
| Season | Monthly Solar | Monthly Bill | Credits Banked |
|---|---|---|---|
| Peak summer (June-Aug) | ~775 kWh/mo | ~$0-5/mo | ~$120-150/mo banked |
| Shoulder (Apr-May, Sep-Oct) | ~600 kWh/mo | ~$20-40/mo | Small bank |
| Deep winter (Dec-Jan) | ~325 kWh/mo | ~$80-100/mo | Drawing from bank |
| Annual true-up (April) | Unused annual credits typically expire or paid at avoided cost — net metering credit bank resets annually | ||
Three Expert Tips for Maximizing Net Metering Savings
Maximize Self-Consumption — It’s Worth Full Retail Regardless of Your NEM Policy
Under every net metering policy in the US, electricity you consume directly from your solar panels is valued at the full retail rate — because it directly replaces grid electricity you would have paid for. Even under California’s NEM 3.0 where export credits are only $0.04-0.08/kWh, self-consumed solar is worth $0.30-0.44/kWh (SDG&E’s retail rate). Shift your high-consumption activities to daylight hours: run dishwashers, laundry, and pool pumps between 10 AM and 4 PM. Program your EV to charge at noon. Set your water heater to pre-heat during peak solar hours. Each kWh you shift from evening (grid) to midday (solar) directly increases the financial return on your system.
Understand Your Annual True-Up Before Sizing Your System
Most utilities process net metering credits with a monthly bill rollover — you accumulate credits in summer and draw them down in winter. But virtually every utility resets the credit bank annually (usually in April or at your anniversary month), and any remaining unused credits are typically paid out at avoided cost or simply expire. This means a dramatically oversized system wastes credits. The optimal system size for net metering is one that produces approximately 95-110% of your annual consumption — producing just enough to cover the year, not generating excess that goes uncompensated at annual true-up. Check your utility’s exact true-up policy before system sizing. California utilities describe their NEM true-up process at cpuc.ca.gov/nem.
Under NEM 3.0, Battery Storage Changes the Math Completely
California’s NEM 3.0 reduced the value of solar exports by up to 75% compared to NEM 2.0. But it also created a powerful incentive for battery storage. Under NEM 3.0’s Time-of-Use rates, exporting electricity between 4-9 PM (peak hours) earns significantly more than exporting at noon. A home battery system like the Tesla Powerwall or Enphase IQ Battery can charge from your solar panels during the day and then export during the peak evening TOU window — or power your home during peak hours to avoid buying expensive peak electricity. The combined 30% federal ITC now applies to standalone batteries (since IRA 2022), making battery economics much more favorable. SDG&E, PG&E, and SCE customers on NEM 3.0 should model both solar-only and solar-plus-battery scenarios before installation.
Frequently Asked Questions About Net Metering Savings
Related Solar Calculators
Legal Disclaimer and Editorial Transparency
Net metering savings estimates are for informational planning purposes only and are not a guarantee of utility bill savings. Actual savings depend on your utility’s specific net metering tariff, rate structure, interconnection agreement, TOU pricing schedule, and the actual production of your installed system. Net metering policies change frequently — always verify current net metering rules with your utility and/or the DSIRE database at dsireusa.org before making solar investment decisions. California NEM 3.0 export rates (Avoided Cost Calculator) are set by the California PUC and updated periodically at cpuc.ca.gov/nem. Monthly production seasonal factors are based on NREL PVWatts US average data; your actual monthly production will vary by location, roof orientation, and weather. USCalculators.com is not affiliated with any utility, solar installer, or government energy agency.