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Powering SE Queensland with Solar & Electrical Excellence
From Tweed Heads to Gympie — East West Solar and Electrical delivers professional solar installation, battery storage, and electrical services with over 11 years of local experience.

Do I need a home battery?A home battery can help some households get more from their solar, but it's not necessarily the...
31/08/2026

Do I need a home battery?

A home battery can help some households get more from their solar, but it's not necessarily the right choice for everyone. Here's how to work out whether it could suit your home.
Home batteries are becoming an increasingly common addition to solar systems, helping households store excess solar energy for later use. For some people, a battery can be a practical way to get more value from the energy they generate and reduce their reliance on electricity from the grid.

But a battery is also a significant investment, and it's not necessarily the right choice for every home. Whether a battery is worth considering often comes down to how much energy you generate, when your home uses electricity and whether you're able to use that energy when you need it most.

If you're weighing up whether a battery could be the next step for your home, here's what to consider.

How does a home battery work?

Solar panels generate electricity during the day when the sun is shining. Some of that electricity is used straight away to power your home, while any unused energy is typically sent back to the grid.

A battery allows some of that unused solar energy to be stored instead. Rather than exporting everything you don't use immediately, the stored energy can be used when your solar panels are producing less electricity or not generating any at all.

For many households, this means using more of the energy they generate themselves and less electricity from the grid during the evening.

Tip callout

Good to know: Battery interest has grown in recent years, driven by fluctuating energy costs, changing feed-in tariffs and government incentives available in some states. However, the value of a battery still depends largely on how much excess energy you produce and when you use electricity.

Who is most likely to benefit from a battery?

A battery is often most beneficial when there's a mismatch between when your solar generates electricity and when you use it. Some of the situations below may indicate that battery storage is worth exploring.

You regularly export excess solar energy

If your solar system generates more electricity than you need during the day, a battery can allow you to store some of that energy for later use rather than exporting it immediately. Some customers also explore battery storage as feed-in tariffs change over time.

You use most of your electricity in the evening

Many homes will generate solar power while the family is at work, school or out during the day, then use most of their electricity once they're home. This often includes cooking, running appliances, heating or cooling the home, or charging devices.

If this sounds familiar, a battery may help shift some of that daytime solar energy into the periods when you need it most.

Backup power is important to you

Some battery systems can provide backup power during outages, helping keep selected appliances or circuits running when grid electricity is unavailable. If you live in an area that experiences frequent outages, or rely on electricity to keep important equipment running, this may be another factor to consider when exploring battery storage. Backup capabilities can vary depending on the battery system and how it is installed.

You're planning for future energy needs

If you're considering an electric vehicle or expect your electricity use to grow over time, a battery may form part of a broader energy setup alongside your existing solar system.

When a battery may not make sense

Adding a battery isn't always the next step after installing solar. Depending on how you use energy, you may already be getting the most of the value from your system without battery storage.

You already use most of your solar energy during the day
If your household already consumes the majority of its solar generation as it's produced, there may be less excess energy available to store in a battery.

Your energy usage is relatively low

Households with lower overall electricity consumption may see fewer benefits from adding battery storage, particularly if there isn't a large amount of excess solar being exported.

You've only recently installed solar

If you've recently installed solar, it can be worthwhile to spend some time understanding how much electricity you're generating, using and exporting before deciding whether battery storage is the next step.

Questions to ask before investing in a battery
By now, you've probably got a sense of whether you could benefit from a battery. If you're still unsure, these questions can help clarify whether battery storage is worth exploring further.

Ask yourself:

How much of my solar energy is being exported to the grid?
When does my household use the most electricity?
Am I trying to use more of the energy I generate?
Do I expect my electricity usage to increase in the coming years?
Have I already optimised how I use the solar system I have today?
Your answer can help determine whether a battery is likely to deliver value, both now and in the future.

Tip callout

Good to know: Home batteries vary in size, features and functionality. Some are designed simply to store energy for later use, while others may offer additional features such as backup power during outages. It's important to check that any battery you're considering is compatible with your existing solar system, and their right battery will depend on your energy needs and solar generation. A larger battery may store more energy, but it won't necessarily deliver greater value if your household doesn't generate enough excess solar energy to charge it.

Is a home battery right for you?

A home battery won't be the right fit for everyone. The households most likely to benefit are often those generating more solar energy during the day than they're able to use at the time. For others, understanding and optimising their existing solar system may be the better first step.

The best place to start is by understanding how you use energy today. Once you know when you generate electricity, when you use it, and how much you're exporting, you'll be in a better position to decide whether a battery could be right for your home.

call Smiley at East West to get a FREE assessment 0409 140 247

Could a home battery cut your bills even without solar panels?The savings depend on your tariff, usage and upfront costs...
05/08/2026

Could a home battery cut your bills even without solar panels?

The savings depend on your tariff, usage and upfront costs

Jeff Meyer Energy editor

A home battery can charge from the grid during cheaper periods and power your home when electricity prices are higher

Not every home is made for solar panels. Some roofs are shaded for much of the day. Some are the wrong shape, face the wrong way or belong to a listed building. Flats, rented homes and leasehold properties can all come with extra hurdles. And for many households, the reality is that the upfront cost of installing a full solar panel and battery system may simply be too much to take on at once.

But that raises an interesting question: if you can’t put solar panels on your roof, could a home battery still help you cut your energy bills? The short answer is yes, potentially. A standalone home battery won’t generate electricity in the way solar panels do, but it can afford you the opportunity to buy electricity from the grid at more opportune times.

By charging when electricity is cheaper and using it to power your home when prices are higher, a battery can help some households make better use of smart tariffs and avoid more expensive peak-rate electricity. The catch is that the sums are more delicate than they are with solar.

Without panels, you’re not storing your own free electricity. You’re relying on the gap between cheaper and more expensive grid electricity being wide enough – and consistent enough – to make the investment worthwhile.

Phil Steele, future technologies evangelist at Octopus Energy, says his preference is still to pair batteries with solar where possible, because “the moment you’ve got solar, you’re generating your own energy and storing any excess energy.” But he says a battery can also work on its own, provided the tariff makes sense.

“You can use a battery without solar by charging it when energy is cheap and using it later when import prices are higher,” says Steele. “The thing to be mindful of is that you’re dependent on there being enough of a spread between the cheap periods and the high periods.”

Can you have a home battery without solar panels?

Yes. A home battery doesn't have to be connected to solar panels. Instead of storing surplus solar electricity, it can charge directly from the grid.

The principle is simple. If your electricity tariff has cheaper off-peak periods, the battery can be set to charge during those hours. Later, when electricity is more expensive, your home can use the stored power instead of buying electricity from the grid at a higher rate.

That can be especially useful for households that use a lot of electricity in the evening, when national demand tends to be higher. Using electricity for cooking, washing, lighting, heating, watching TV and gaming can all add up during the hours when many people are at home.

A battery doesn’t necessarily change what you do. You may still cook dinner at 6pm or put the washing machine on after work. What differs is when some of the electricity powering those appliances was bought.

How does a battery-only setup save money?

The savings come from what is known as load shifting. Rather than paying one flat electricity rate throughout the day, a household on a time-of-use tariff may pay less during quieter periods and more during peak periods.

A home battery lets you shift some of your electricity buying into the cheaper window.

For example, if electricity is cheaper overnight and more expensive in the early evening, the battery can charge while you sleep and discharge when you get home. The bigger the gap between the off-peak and peak rates, the more valuable each unit of electricity shifted through the battery becomes.

The exact saving depends on the tariff, the size of the battery, how much electricity you use during expensive periods and how efficiently the system charges and discharges, Steele says. But the core idea is straightforward: a battery can help you use cheap electricity at the most expensive times of day.

Who is a battery without solar best suited to?

A standalone battery isn't right for every home. It's most likely to make sense if several conditions line up.

It may be worth considering if you have access to a smart tariff with a meaningful cheap period, use a lot of electricity during peak hours and have enough daily consumption to charge and discharge the battery regularly. Homes with electric vehicles, heat pumps, electric hot water, induction hobs or high evening usage may have more opportunities to shift electricity from expensive periods to cheaper ones.

It may also appeal to households that can't install solar panels but still want more control over their energy costs. This could include some flat owners, leaseholders, renters with permission to install fixed equipment, or homeowners whose roofs are not suitable for panels.

However, the case is weaker if your electricity use is already low, if most of your usage already happens overnight, or if you are on a tariff with no meaningful difference between cheap and expensive periods. A battery is also less attractive if you need a very fast payback, because the upfront cost can still be significant.

The most important question is not just how big the battery is. Instead, it is worth considering how much electricity you can realistically shift through it each day.

How much could you save without solar?

There is no single answer, because a battery-only system is highly dependent on the home and the tariff.

Steele says savings from a battery-only setup are likely to be lower than those from a solar-plus-battery system. With solar, the battery can store electricity that would otherwise be exported or unused. Without solar, the savings come only from buying electricity cheaply and using it later.

“If you’re battery only, I think the savings are going to be a lot lower,” says Steele. He estimates that some households might be able to reduce their electricity costs by “somewhere between 10 and 20 per cent,” depending on the size of the battery, the property’s energy consumption and the spread between tariff rates.

That range shouldn't be treated as a guarantee. A household with a strong off-peak tariff and high evening usage may do better than one with low electricity demand and a smaller price difference between day and night rates.

A simple way to think about the maths is to look at three figures. Firstly, how many kilowatt-hours can you charge into the battery during the cheap period? Next, think about how much of that stored electricity you can use during expensive periods. Finally, consider the difference between the cheap rate and the rate you would otherwise have paid.

If you can only shift a small amount of electricity each day, the annual savings may be modest. But if you can fill and empty a useful proportion of the battery most days, the economics become more interesting.

Part of the value of solar panels is the money you can save by generating your own electricity

The tariff spread is the make-or-break factor

With solar panels, part of the value comes from generating your own electricity. With a battery-only setup, the value depends much more heavily on the tariff.

“The danger with buying a battery to trade in that way is that you’re dependent on there being enough of a spread between cheap periods and high periods,” says Steele.

That 'spread' is the gap between what you pay to charge the battery and what you avoid paying when the battery discharges. If the cheap rate is much lower than the peak rate, the battery has more room to save money. If the gap narrows, the payback takes longer.

That means homeowners should be cautious about doing the maths based only on today’s tariff.

“You’ve always got to be mindful of the tariff,” says Steele. “Because you might do your maths on today’s tariff and then discover that the tariffs change.”

Before buying a battery without solar, Steele says it's worth asking a few practical questions. How long is the tariff fixed for? What happens if the cheap period becomes less generous? How much would the battery save if the gap between cheap and peak rates narrowed? And would the system still make sense if your household usage changed?

A standalone battery can cut bills, but the tariff is doing a lot of the work.

Do you need a special energy tariff?
A battery can technically charge from the grid on almost any electricity tariff, but the financial case is much stronger when there is a cheaper period to take advantage of.

On a standard flat-rate tariff, there may be little benefit in charging a battery from the grid and using that same electricity later. You would be moving electricity around, but not necessarily saving much money.

On a time-of-use tariff, the calculation changes. If the battery can be charged during lower-cost hours and used during higher-cost hours, it can help reduce the amount of expensive electricity a home buys from the grid.

Octopus offers smart tariffs designed for different types of low-carbon technology, including tariffs for electric vehicles, heat pumps, solar panels and batteries. For battery owners, the right option will depend on the equipment in the home and how actively the household wants the system to be managed.

Automation can also make a difference. Steele says a static time-of-use tariff can be fairly simple to programme.

“If you are on a fairly static time-of-use tariff, you can go into the software on the battery system and say, always charge during these six hours until you’re fully charged,” he says.

Dynamic tariffs are more complicated, because the cheapest periods may change.

“If you’re on something like the Agile tariff, the rates vary every day,” he says. “You can’t just programme the battery to do the same thing at the same time each day. You need software that can read the tariff and tell the battery when to charge or discharge.”

For many households, that means the best battery setup is one that can work with smart controls, apps or third-party optimisation software. The less you want to think about energy prices, the more important it becomes that the system can do the work for you.

What size battery would you need?

A bigger battery can store more electricity, but bigger is not always better. The right size depends on how much power your household uses, when you use it and how much cheap electricity you can realistically put into the battery.

A smaller battery may cover background loads and some evening use, such as for lighting, wifi, TV and cooking. A larger battery may be needed if you want to cover heavier demand from a heat pump, electric hot water, a tumble dryer, an EV charger or a busy family home in the evening.

Steele says a typical home battery might be around 10kWh, but how long that lasts depends heavily on the home. In his own home, which has a heat pump and family evening usage, he says a 10kWh battery might cover “about a quarter of the day” in winter. In summer, when heating demand is lower, a battery may stretch further.

The best starting point is your smart meter data. Look at how much electricity you use between late afternoon and bedtime, when prices are often higher on time-of-use tariffs. Then compare that with how much electricity you could buy during the cheaper window.

A battery that is too small may not shift enough electricity to make a big difference. A battery that is too large may cost more than you can justify, especially if you rarely use its full capacity.

What are the downsides of a battery without solar?
The first downside is cost. Home batteries can run into several thousand pounds, depending on capacity, brand, inverter requirements and installation complexity. Without solar panels, the battery has only one main job: exploiting cheaper grid electricity. That means the payback calculation needs to be realistic.

The second downside is tariff risk. A battery-only setup depends on cheap and expensive electricity periods remaining far enough apart. If that difference changes, the savings can change too.

The third is that you are not creating your own energy. A battery can help you buy electricity more intelligently, but it doesn't reduce your underlying energy demand in the way insulation, efficient appliances or behavioural changes can.

There are also some practical issues to consider. You need somewhere to install the battery, a compatible electrical setup, and a system that meets relevant safety and installation standards. Some homes may need additional electrical work. Renters and leaseholders will usually need permission before installing fixed equipment.

Battery efficiency should also be factored in. No battery gives back 100 per cent of the electricity used to charge it. Some energy is lost during charging and discharging, so the price difference between cheap and expensive electricity needs to be large enough to cover those losses as well as contribute towards the cost of the system.

Is a home battery worth it without solar panels?
A home battery can cut your bills without solar panels, but it is not a universal shortcut to cheap electricity.

It's most likely to work for households that use a meaningful amount of electricity during peak periods, can access a strong off-peak or smart tariff, and have enough battery capacity to shift that usage from expensive hours to cheaper ones. It is less likely to work for households with low electricity use, limited access to time-of-use tariffs, or a need for a very short payback period.

The key is to treat a battery-only system as a tariff-led investment. The hardware is important, but the savings come from the relationship between your battery, your electricity use and your tariff.

Without solar panels, a home battery doesn't generate free power on your roof, but it can help you buy grid electricity more strategically. And for the right household, that can still be valuable.

https://www.independent.co.uk/home-improvement/home-battery-without-solar-panels-bills-b2999141.html

Power Network Costs To Rise Nationally, With One Exceptionby Kim Wainwright AER network pricingThe Australian Energy Reg...
05/08/2026

Power Network Costs To Rise Nationally, With One Exception

by Kim Wainwright

AER network pricingThe Australian Energy Regulator has completed its annual round of electricity network pricing approvals across most of the country, with one state defying the national trend for higher costs.

The national picture is fairly clear: most regions across the National Electricity Market are facing higher network costs in 2026–27, although the size of the increases varies significantly depending on where you live. Victoria’s network results were more mixed than most other jurisdictions, highlighting how differently electricity pricing can move between states and distributors.

These network charges don’t determine your final power bill on their own, but they are a major component of the electricity prices retailers eventually pass on to households. Network charges cover the cost of building, maintaining and operating the poles-and-wires infrastructure that delivers electricity to homes and businesses.

Which Networks Are Seeing The Biggest Changes?

The AER’s pricing data shows a broad upward trend across NSW and Queensland in particular, with several networks recording sizeable increases in the network portion of household electricity bills.

Among the largest increases:

Endeavour Energy (NSW): up around 11%
Energex (QLD): up around 12%
SA Power Networks: up around 10%
Ausgrid (NSW): up around 10%

More moderate increases include:

Essential Energy (NSW): up around 6%
TasNetworks: up around 5%
United Energy (VIC): smaller increases

Victoria is the main outlier nationally, with two distributors recording decreases:

AusNet Services: down around 9%
Jemena: slight decrease

These figures reflect estimated changes in the network portion of household electricity bills, not total retail bill increases.

Not all networks appear in the list above because some operate under government-regulated retail pricing (such as Ergon Energy and Power and Water Corporation) or have tariff structures that don’t produce a comparable residential percentage in the AER’s model.

Victorians Secure Lower Electricity Bills
After the AER’s decision, Victoria’s Essential Services Commission announced it would cut the cap on standard electricity offers, with bills set to drop by around 5%, or $84, for the average household on the Victorian Default Offer.

The savings are even larger for small businesses, which will save around 6% on average, or $241.

What About WA?

WA is not part of the AER’s annual network pricing process because electricity pricing there is handled separately through the WA State Budget.

For 2026–27, the WA Government confirmed a 2.75% increase to the fixed residential electricity charge for households on Synergy’s A1 home plan. That’s a separate pricing decision to the network cost changes being approved by the AER across the eastern states and territories.

Why Are Network Costs Rising?
The drivers vary slightly between states, but the broader pattern is consistent.

The AER says several themes appear repeatedly across the country, including:

higher transmission costs
inflation
energy transition investment
bushfire mitigation spending
recovery of previously under-recovered revenue
Networks are also investing heavily in upgrading old infrastructure, improving bushfire resilience and adapting local grids to handle growing levels of rooftop solar, batteries and electric vehicles.

In NSW, some increases are linked to major energy transition and transmission projects, while South Australia’s figures also include costs associated with maintaining electricity system reliability.

The AER’s figures only cover the network portion of electricity bills, so exactly how these changes flow through to final retail prices will vary depending on retailers and tariff structures.

The National Default Offer will be released by the Australian Energy Regulator on Tuesday. A draft determination in March indicated that the default offer in NSW, SA and South East Queensland could fall due to lower wholesale, environmental and retail operating costs.

Update 26/05/26: The National Default Offer has now been released, with most households across NSW, South East Queensland and South Australia set to see lower benchmark electricity prices from July.

What Does This Mean For Solar Households?
Rising network costs still matter for homes with rooftop solar because network charges remain embedded within retail electricity prices, even when households significantly reduce their grid consumption.

Solar and batteries remain among the most effective ways to reduce electricity bills — particularly as higher retail electricity prices improve the value of avoided grid usage.

With network charges increasing across much of Australia, the SolarQuotes Solar Calculator helps you estimate how much solar or a battery could offset future bill rises, while our Electricity Plan Comparison Tool can help determine whether you’re on the best energy plan for your needs.

https://www.solarquotes.com.au/blog/aer-network-costs-rise/

AUSTRALIA'S FLOATING SOLAR PANELS SOLVE TWO RESOURCE PROBLEMS AT ONCE. BY OLIVIA RICHMAN Australia is on the edge of a w...
04/08/2026

AUSTRALIA'S FLOATING SOLAR PANELS SOLVE TWO RESOURCE PROBLEMS AT ONCE.

BY OLIVIA RICHMAN

Australia is on the edge of a water shortage crisis. Farming represents the biggest drain on the continent in this context, using 70% of the country's water supply, though the issue is also compounded by prolonged periods of drought and increased human activity. In the spirit of preserving its water supplies, the country has designed a new kind of floating solar panel that could help.

Called floating photovoltaics (FPV), these solar panels can be found in the country's dams and water reservoirs. Essentially, they form a sort of roof over these bodies of water, trapping evaporation in by covering the water's surface. At the same time, they provide renewable energy to power grids in much the same way that standard solar panels help the environment.

These floating solar panels have the potential to save a lot of water. The dams and reservoirs across Australia see 1,400 gigaliters of water evaporate each year. As reported by Bloomberg, one company developing these panels has claimed these panels can reduce that evaporation by more than half. In an attempt to save water in the country, the Australian Renewable Energy Agency invested $8.5 million in an initiative designed to deploy more floating solar panels across its irrigation farms in 2025.

Floating solar panel projects in Australia and beyond

Wannon Water currently has one of Australia's largest floating solar panel systems, generating over 600,000 kilowatt-hours of renewable electricity each year over Warrnambool's Brierly Basinin southern Victoria. The 1,260 panels installed in the network capture direct sunlight not just from the sky above but from its reflection on the water's surface below. Since they have been installed, they have helped reduce greenhouse gas emissions by close to 600 tons every year. A similar installation of 644 floating solar panels by Gippsland Water is generating enough kilowatts to power 90 homes per day at peak capacity in the region as well.

What's unique about these floating solar panels is that they don't completely cover the water source like some other strategies designed to reduce evaporation. This is a plus because it avoids triggering algal blooms and keeps the water clean. With so many environmental benefits, floating solar panels are becoming a critical part of not just Au energy plans going forward, but also Germany, California, and other regions.

https://www.slashgear.com/2198018/australia-floating-solar-panels-doing-something-unexpected/

Tesla Powerwall hits a 5kW export cap, and a sunny solar array starts throttling itself"It seems to be a chicken-and-egg...
02/08/2026

Tesla Powerwall hits a 5kW export cap, and a sunny solar array starts throttling itself

"It seems to be a chicken-and-egg situation where the Powerwall is discharging."

by Vivian TranJuly

A 5-kilowatt export ceiling turned one homeowner's Tesla Powerwall setup into an unexpected balancing problem: even on sunny days when the roof could have produced more electricity, the system was not making full use of that available solar.

Rather than storing the extra sunshine, the battery was sending power out while the solar panels were being forced to hold back — the opposite of what homeowners typically want from smart energy equipment.

What's happening?

Once a new 5 kW site export limit was introduced, the homeowner said their solar system began cutting generation to stay within the rule.

In a recent Reddit post, they explained that their panels use microinverters and are set up separately from the Powerwall inverter.

At the same time, the Powerwall was also responding to that 5 kW cap and continued discharging during high-cost time-of-use periods.

As the homeowner put it, "It seems to be a chicken-and-egg situation where the Powerwall is discharging because the export is at the limit and it's 'cost effective', but that very same discharge is preventing me from using PV generation that's being throttled."

Even with strong sunlight, some solar output can still be clipped. For people using solar panels and battery storage to cut their energy bills, that kind of split decision-making can mean lower savings and wasted clean power.

Why does it matter?

As more households add rooftop solar, batteries, and EV chargers, export caps are becoming a more familiar part of home energy systems.

Want to go solar but not sure who to trust? EnergySage has your back with free and transparent quotes from fully vetted providers in your area.

To get started, just answer a few questions about your home — no phone number required. Within a day or two, EnergySage will email you the best options for your needs, and their expert advisers can help you compare quotes and pick a winner.

Solar panels can save you more than $50k over their 25-year lifespan, and EnergySage can help you save as much as $10k on installation. Which begs the question — isn't that worth an email or two?

Get Started

If different pieces of equipment respond to those caps differently, some of the setup's financial upside can slip away.

Adding battery storage is one of the best ways to protect your home during outages, save money on energy, and move closer to going off-grid.

In this case, the control settings mattered because the homeowner wanted to keep the benefits of time-of-use mode. That would allow the battery to export power before sunrise, open up room for midday solar, and potentially bring in utility payments — small operating details that can meaningfully affect monthly bills.

For homeowners hoping to avoid that kind of mismatch, it can help to explore EnergySage's free tools to get information about home battery storage options, including competitive installation estimates.

What can I do?

If your solar and battery systems seem to be working at cross-purposes, the first step is usually to review operating modes and control settings with your installer or manufacturer.

In a case like this, homeowners may want to ask whether time-based control, self-powered settings, reserve levels, current transformer placement, or export-limit programming is causing the battery to discharge when solar should be prioritized.

For people who do not need a full-scale backup setup, Pila is another company offering battery backup options.

And because this issue centers on solar, it is also worth knowing that EnergySage can help you compare solar options. That can make it easier to evaluate equipment, sizing, and installer expertise before committing to a system.

Call Smiley 0409 140 247

A 5-kilowatt export ceiling turned one homeowner's Tesla Powerwall setup into an unexpected balancing problem.

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Shop 5 308-316 High Central Road
Macleay Island, QLD
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