Guide to Solar Batteries: Are They Worth It? (June 2024) (2024)

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Are Solar Batteries Worth It?

In general, installing a solar battery is worth it when you can achieve higher savings than the cost of ownership. A home battery can add over $10,000 to the cost of a solar panel system, but there are several scenarios in which you can take advantage of energy storage, including:

  • You can avoid the highest kWh prices on a time-of-use tariff, or when the price of electricity changes depending on the time of day
  • You can reduce energy demand charges (if included in your electricity costs)

You cannot use solar panels alone as a backup power source during blackouts or suboptimal conditions, due to their variable output, but a charged battery can keep your appliances running. Plus, if the local electric company charges higher rates during certain hours, you can avoid costs by switching to a solar battery.

A solar battery is also useful if your local power company does not offer net metering. While you won’t get credit for sending excess solar power to the grid, a battery will still let you use that extra energy. However, this only makes financial sense if the cost of battery ownership is less than what you would pay to use the grid normally at night.

Keep in mind that the 30% federal tax credit is not only available for solar panels, but also for home batteries. This tax credit can be combined with any solar incentives offered by local governments and utility companies. The financial return offered by a solar battery system improves when you combine incentives from several programs.

What Are Solar Batteries?

A solar battery is a device that stores electric charge in chemical form, and you can use that energy at any time, even when your solar panels are not generating power. Although the battery backup systems that are coupled with solar panels are often referred to as solar batteries, they can store charge from any electricity source. This means you can recharge a battery with grid power when solar panels have low productivity, or you can use other renewable sources such as wind turbines.

There are different types of battery chemistries, each with advantages and limitations. Some types of batteries are suitable for applications where you need a large amount of energy in a short time, while others work best when you need a steady output over a longer period. Some common chemistries used by solar batteries are lead-acid, lithium-ion, nickel-cadmium and redox flow.

When comparing solar batteries, you should consider both the rated power output (kilowatts or kW) and energy storage capacity (kilowatt hours or kWh). The rated power tells you the total electrical load you can connect to a battery, while the storage capacity tells you how much electricity a battery can hold. For example, if a solar battery has a rated power of 5 kW and a storage capacity of 10 kWh, you can assume:

  • The battery can power up to 5,000 watts (or 5 kW) of the electrical load simultaneously.
  • Since the battery stores 10 kWh, it can sustain a maximum load of 5 kW for two hours before depleting its charge (5 kW x 2 hours = 10 kWh).
  • If the battery powers a smaller load of only 1,250 watts (or 1.25 kW), it can last for eight hours with a full charge (1.25 kW x 8 hours = 10 kWh).

It’s important to note that the rated power of solar panels and battery storage systems are not the same. For example, you could have a 10 kW home solar system with a battery that has a rated power of 5 kW and 12 kWh storage bank.

How Much Do Solar Batteries Cost?

You can expect to pay around $25,000 to $35,000 for a solar system and battery, depending on the size and other factors like your location, according to the U.S. Office of Energy Efficiency & Renewable Energy. It is typically cheaper (and easier) to install both your panels and battery at the same time — a battery alone can cost around $12,000 to $22,000 if you decide to purchase storage after you install solar panels.

In terms of performance, lithium-ion batteries are considered the best option for home applications where you need daily charging and discharging.

  • The latest lithium-ion batteries offer a lifespan of over 4,000 cycles, meaning they can last over 10 years with a daily charging cycle.
  • The price of lithium-ion batteries varies depending on the brand and energy storage capacity, but most homeowners can expect to pay around $10,000 to $15,000 for a battery system (without solar panels).

Thanks to the Inflation Reduction Act, which was passed in August 2022, solar batteries qualify for a 30% federal tax credit. This is a credit you can claim on your federal income taxes for the year you purchase your solar system. So for example, you can claim $3,000 as a tax deduction if you purchase a $10,000 unit. While you can only claim the credit once, you can roll it over to the next year if the taxes you owe are less than your credit amount.

The table below outlines the key features of four common types of solar batteries, along with the average cost of each when used in residential settings.

Solar Battery TypeSizePowerCost Range
Lead-acidSimilar to car batteries100–250 watts per battery; can combine multiple units as neededLess than $250 per kWh
Lithium-ionVaries by manufacturer and battery model; the Tesla Powerwall 2 is 45.3 inches high by 29.6 inches wide, and the Enphase IQ 10 is 42.1 inches high by 26.1 inches wideRanges from 3 to 20 kWOver $800 per kWh; can achieve lower prices in large-scale applications
Nickel-cadmiumSimilar to car batteries100–250 watts per battery; can combine multiple units as neededLess than $400 per kWh
Redox flowVery large; each unit can be the size of a shipping containerTypically 100 kW or larger; can reach megawatts (1 megawatt = 1,000 kW)Less than $350 per kWh in large-scale applications

The National Renewable Energy Laboratory (NREL) publishes periodic reports with the latest cost data for solar and battery systems in residential, commercial and grid-scale projects. The Pacific Northwest National Laboratory (PNNL) keeps a similar database, which covers multiple battery technologies in megawatt-scale applications (larger than 1,000 kW).

Types of Solar Batteries

All solar batteries have the same basic function, but each type is suited for different applications. Your solar battery will offer higher reliability and return on investment when its chemistry is suitable for the application at hand.

For example, some electricity consumers are subject to higher kWh prices at certain times of the day, or additional charges for sudden peaks in consumption. In this case, you need a battery bank capable of delivering large amounts of electricity in a short time. Lithium-ion batteries are suitable for this task, but not redox flow batteries.

Regardless of the battery type, you also need to consider the depth of discharge (DoD), which indicates a battery’s usable capacity. The service life of a battery can be drastically shortened if you exceed the DoD, or you can even cause permanent damage. For example, using 70% of the stored energy is acceptable with a solar battery rated for 80% DoD, but not a 50% DoD battery.

Lead-Acid

Lead-acid batteries are an established technology, commonly used by off-grid solar energy systems in remote locations. Lead-acid batteries are affordable and have a well-established supply chain due to their popularity, so you can easily find vendors and technical support.

In spite of their low cost, lead-acid batteries have some technical limitations you should consider:

  • Lead-acid batteries typically have a charging life of 500 to 1000 cycles.
  • Batteries should be fully recharged after each use, or the lifespan is drastically reduced.

An absorbed glass mat or AGM battery is an improved version of the traditional lead-acid battery. They can charge faster while having a spill-proof design and more durability. You can also find AGM deep cycle batteries that are designed for 80% DoD.

Using lead-acid batteries along with solar panels requires charge controllers to sustain a suitable charging current. These batteries should not be wired directly to your solar array, or your system may be damaged by excessive current.

Lithium-Ion

Lithium-ion batteries have become very popular in recent years since they can achieve synergy with solar panels and wind turbines. For example, the Tesla Powerwall and Enphase IQ are two types of lithium-ion batteries commonly used in home solar applications. You can also find smaller lithium batteries from brands like Renogy and WindyNation, which are portable and better suited for DIY solar projects.

Lithium iron phosphate or LFP batteries are a subtype of lithium batteries, characterized by a superior service life. The best LFP batteries offer a service life of over 4,000 cycles at 80% DoD, which means they can last for over 10 years on a daily charging cycle. This makes LFP batteries the ideal complement to solar installations. Unlike lead-acid batteries, which need separate charge controllers, many of the lithium battery models that are commercially available come with built-in chargers and controls.

The main drawback of lithium-ion batteries is the high price, but this could change in the near future — the U.S. Department of Energy is targeting a 90% energy storage cost reduction by 2030. Lithium batteries can also suffer a phenomenon called thermal runaway when used at high temperatures, which causes them to catch fire. You can prevent thermal runaway by making sure your batteries are high-quality and installed by qualified electricians.

Nickel-Cadmium

Nickel-cadmium batteries are characterized by their durability, tolerance to high temperatures and simple maintenance needs. Thanks to these performance features, nickel-cadmium batteries are popular in industrial and utility applications. Unfortunately, cadmium is highly toxic to humans, so nickel-cadmium batteries are not recommended in homes.

Flow

Flow batteries store energy by separating positive and negative electrical charges in chemical solutions, which are stored in separate tanks. When these two solutions interact, they undergo a reduction-oxidation reaction (redox) and the battery releases energy. This battery technology is also referred to as “redox flow” for this reason.

The main disadvantage of redox flow batteries is their space requirement, and they are not cost-effective for small-scale projects. Even a small redox flow battery system can be the size of a shipping container, so using flow batteries in home solar systems is not viable.

How To Choose a Solar Battery

The first step to choosing a solar battery is to understand your energy needs. The average annual electricity consumption for a U.S. resident was 10,632 kWh in 2021, which averages out to around 886 kWh per month, according to the U.S. Energy Information Administration. Knowing your average energy consumption can help you better determine important factors like your ideal battery capacity, or how much energy a battery can store.

Lithium-ion batteries are recommended for home solar systems since their long service life is suitable for a daily charge cycle. However, lead-acid batteries are viable as backup power systems that are used occasionally, or as part of an off-grid system.

Home batteries can be classified based on how they interact with solar panels:

  • Direct current or DC-coupled batteries use the same inverter as your solar panels, and both systems are connected to the DC side.
  • Alternating current or AC-coupled batteries have a separate inverter, which connects directly to your home’s AC wiring.

You can only use DC-coupled batteries if you have a hybrid inverter, which is designed to manage solar panels and energy storage simultaneously. If your solar panels have a traditional inverter that cannot handle energy storage, you need an AC-coupled battery with a dedicated inverter.

If you intend to use your battery as a backup power source, check its specifications to make sure it can operate off-grid. Not all solar batteries are designed to be used during power outages, and many models can only operate when synchronized with the grid.

We have reviewed the top solar batteries available in the nation and recommend installing the SunPower SunVault due to its large energy capacity of 13 kWh and an above-average continuous power rating of 6.8 kW. It also includes an excellent warranty that doesn’t limit the number of cycles your battery can discharge.

Frequently Asked Questions About Solar Batteries

Lithium-ion batteries are considered the best option for home solar power systems since they can achieve a long service life even under a daily charging cycle.

Solar batteries are expensive but useful in several applications. The following are some cases where solar battery storage can make sense financially for residential users:

  • If you pay time-of-use electric tariffs, which charge a much higher kWh price at times of high energy demand. You can help offset costs during these times by pulling stored energy from your solar battery, rather than the grid.
  • If you pay demand charges, which are calculated based on your peak kW consumption during a billing period. Solar batteries can be used to lessen these peaks in electric demand.

The case for installing a solar battery also improves when you factor in incentive programs from the local government or your utility company. The U.S. provides a 30% federal tax credit for home battery systems with an energy storage capacity of at least 3 kWh. Depending on where you live, you can also take advantage of local incentives to lower your overall cost.

The price varies depending on the brand and model, but the average price is around $800 to $1,000 per kWh of battery capacity. For example, the Tesla Powerwall has an energy storage capacity of 13.5 kWh and it sells for around $11,500.

Solar batteries have pros and cons like any renewable energy technology. Some of the main limitations of solar batteries include:

  • Having a higher upfront cost than a stand-alone solar panel system.
  • Some electricity is lost in the form of heat during the charging cycle.
  • Exposure to hot weather can greatly shorten the lifespan of a battery.

Durability should not be an issue when you use a high-quality battery installed by solar professionals. The best solar batteries now come with a 10-year product warranty.

If you have feedback or questions about this article, please email the MarketWatch Guides team ateditors@marketwatchguides.com.

Guide to Solar Batteries: Are They Worth It? (June 2024) (7)

Leonardo DavidContributor

Leonardo David is a writer and energy consultant who has worked on projects funded by the Inter-American Development Bank. An electromechanical engineer, he has written about solar energy and the electrical power industry since 2015.

Guide to Solar Batteries: Are They Worth It? (June 2024) (8)

Tori AddisonEditor

Tori Addison is an editor who has worked in the digital marketing industry for over seven years. A journalist by trade, her experience includes communications and marketing management in the nonprofit, governmental and academic sectors.

Guide to Solar Batteries: Are They Worth It? (June 2024) (2024)

FAQs

Guide to Solar Batteries: Are They Worth It? (June 2024)? ›

The India Solar Battery Market size was estimated at USD 186.27 Million in 2023. During the forecast period between 2024 and 2030, the India Solar Battery Market size is projected to grow at a CAGR of 15.22% reaching a value of USD 529.33 Million by 2030.

What is the forecast for solar batteries? ›

The India Solar Battery Market size was estimated at USD 186.27 Million in 2023. During the forecast period between 2024 and 2030, the India Solar Battery Market size is projected to grow at a CAGR of 15.22% reaching a value of USD 529.33 Million by 2030.

When should I buy solar batteries? ›

Solar batteries are generally worth it for homeowners living in areas with higher electricity costs, no net metering programs, frequent electricity outages, or limited hours of sunlight. Stand-alone solar panels are an excellent investment, but a battery bank improves their functionality.

Will the price of solar batteries go down? ›

It's worth noting that the NREL's latest data is from early 2022 when lithium prices were climbing to a record high and around twice as high as they are today. Lithium-ion battery prices decreased in 2023 due to falling lithium prices, and are expected to continue falling (more on that later).

What are three drawbacks to storing solar energy in batteries? ›

Q: What are the main cons of solar battery storage? A: The main cons are the high upfront costs, needing dedicated space for installation, more complexity in system design, and more maintenance of parts.

Should I put in a solar battery? ›

Does a solar battery installation make sense for you now? If you're mainly interested in reducing your carbon footprint, then adding a solar battery to your home solar system is probably a natural next step. It may also be the right decision if you're interested in saving money and reducing your energy bills.

Is solar battery technology improving? ›

The future of solar energy storage is bright. As battery technology continues to improve, solar energy storage systems will become more affordable and efficient. This will make it possible for more people to use solar energy to power their homes and businesses, even during times when the sun is not shining.

Is it better to have more solar panels or more batteries? ›

In this case, add more batteries and consider adding a few more panels as well. You might be using quite a lot of power during the day and the batteries are unable to charge back up quickly enough for nighttime activities. Adding more batteries adds power storage to your system.

Which type of solar battery is the best? ›

In most cases, lithium ion batteries are the best option for a solar panel system, though other battery types can be more affordable.

How much does a 10kW battery cost? ›

There isn't a single solar battery that's best for everyone. The cost of residential solar batteries ranges from $1,000 to $1,300 per kWh of capacity installed. Based on this, the cost of a 10kWh battery could range from $10,000 to $13,000, excluding any potential rebates or incentives.

What is the problem with solar panel batteries? ›

Faulty Connections

Loose, damaged, or corroded connections from the solar panels to the controller and controller to the battery can create an inefficient system. These faulty connections create unwanted resistance in wires, so the battery does not charge efficiently.

How many solar batteries are needed to power a house? ›

If you use a battery to go off-grid

Your solar panels produce electricity for an average of 5 hours a day, so you'll need enough stored electricity to last the remaining 19 hours. Based on the 6.3 kW electricity load above, you'll need about 120 kWh of battery capacity—or about 12 average solar batteries.

What is the longest lasting solar battery? ›

Three types of batteries are commonly used in solar storage: lead-acid, lithium-ion, and saltwater. Of these three options, lithium-ion batteries will last the longest.

What happens to solar power when batteries are full? ›

When the battery is full, the excess power is directed back into the solar panels, resulting in a temporary increase in voltage. This method effectively reduces the overall efficiency of the system because the excess energy is essentially lost.

What drains solar battery? ›

High temperatures can cause the battery to lose its charge more quickly, while extremely cold temperatures can reduce its overall capacity. To minimise the effects of temperature, consider installing your solar battery in a location with proper ventilation and insulation.

What is the lifespan of a solar battery? ›

On average, solar batteries last between 5 to 25 years. Lithium-ion batteries are the most prevalent solar battery type and have a lifespan of up to 15 years. Some factors that impact a solar battery's longevity are battery type, installation, depth of discharge, cycle life, environment and maintenance.

What is the forecast for battery prices? ›

Analysts project that the price of batteries—which make up about one-third of the cost of an EV—will plummet almost 40% between 2023 and 2025, thanks to falling critical minerals prices and advancements in battery technology.

What is the forecast for battery cell? ›

Our projections show more than 200 new battery cell factories will be built by 2030 to keep up with rising demand. Overall, the market for cell components—comprising cathodes and anodes, separators, electrolytes, and cell packaging—is expected to grow by 19 percent per annum until 2030, reaching more than $250 billion.

What is the market forecast for lithium-ion batteries? ›

Lithium-ion Battery Market Is Expected To Reach a Revenue Of USD 470.5 Bn By 2033, At 21.0% CAGR: Dimension Market Research. The Lithium-ion Battery Market size is expected to reach USD 84.3 billion by 2024 and is further anticipated to reach USD 470.5 billion by 2033 at a CAGR of 21.0%.

What is the latest solar battery technology? ›

One of the most promising new solar battery technologies is lithium-ion batteries. Lithium-ion batteries are more efficient, have a longer lifespan, and are less expensive than traditional lead-acid batteries.

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