Showing posts with label time of use. Show all posts
Showing posts with label time of use. Show all posts

Sunday, October 13, 2013

DIY ESS - First Full Night of Forced Charge Mode and the next day

After moving the ESS, now in the living room, we were ready to use the Forced Charge Mode all night long for the first time

Right after a good movie with the kids



Nikita: Always good to watch a good Luc Besson movie




At 10:30PM, when the low rate period starts, I just pushed the Control Board pushbutton for 4 seconds and the ESS went into Forced Charge Mode, switching all the Chargers on 

As you can see on the graph, after the water heater is done, only the ESS is on and using around 500W and was shut down at 6:30AM, end of the low rate period, using a regular AC timer, as the battery pack was almost full, its voltage showing 26.7V




Sunday morning, with a full pack the ESS helped a lot with the heating (Daikin heat pump),  breakfast, etc all along the morning and some lunch




This is the overview at the end of the day: We covered quite a bit of our Usage with the ESS and the Solar (sunny day for once)







And tonight, I will switch the ESS to Forced Charge Mode again ... in one hour exactly, before going to bed 

Monday, August 26, 2013

Battery storage take 4: Skinny connections to yield fat savings




Last week at Clean Energy Week in Brisbane there were lots of energy storage products on display. Most of them were focused on the emerging “self use” market where householders attempt to maximise the use of their own solar generated energy in preference to buying power from the grid.

Reports from Europe indicate that “Self Use” is really taking off now that feed-in tariffs are being wound back in key solar markets like Germany. Our local solar market is also preparing for the shift in market behaviour and expected surge in the uptake of energy storage systems.

It now appears that these very same energy storage systems may also be the key to managing a new direction in electricity network charges, and it’s not Time of Use tariffs.

In a disappointing move earlier this year the Queensland Competition Authority increased the standing service fee for Queensland’s 12-month-old Time of Use Tariff 12 from $0.78 per day to $1.13 per day, a dramatic 44.8% rise. Anecdotally, few people have signed up for Tariff 12 in its first year and that’s unlikely to change given that the flat rate Tariff 11 continues to have a much lower $0.50 connection per day.

Given the enthusiasm for Time of Use (TOU) tariffs by the electricity utilities in the southern states, Tariff 12 has been seen by many in the Queensland solar industry as the end game for tackling residential peak load. Why then would the Queensland Competition Authority make this new, opt-in TOU tariff so unpopular? It seems that another solution may be waiting in the wings.

It has been highlighted a number of times that in Queensland, due to the flat rate connection fees charged to residential electricity customers, there is a heavy degree of cross-subsidisation by small peak load homes to support high peak load homes. Or in other words if your house doesn’t have an air-conditioner you’re effectively subsidising the connection costs of your neighbour that does.



With utilities like Queensland’s Energex and Ergon building out their networks to cope with peak load events that occur just a few hours per year, everyone pays so that some can enjoy heating and cooling during the coldest and hottest periods. Much political attention has been given to the alleged inequality of solar homes being subsidised by households without solar power systems. This begs the question “what’s being done about the inequality of connection fees for air-conditioning owners?”

Taking a look at how other markets are dealing with peak load can be instructive because the pressures on network costs being felt in Australia are hardly unique. A recent trial conducted by electricity network operator Alliander in the Netherlands limited household grid connections to just six amps – less even than a single lighting circuit from an average Australian home.

To ensure that the participants in the trial didn’t experience a dramatic reduction in their life styles, the utility provided each home with a 5kW PowerRouter solar power / energy storage system from Dutch manufacturer Nedap. This allows the local loads of each house to actually draw up to 25 amps as required without tripping the six amp connection.

PowerRouters are already available in Australia along with other products with similar Self Use capabilities such as the locally manufactured Selectronic SP Pro.



Restricting the size of the network connection into a house delivers a range of clear benefits to utilities in terms of network augmentation and complexity as well as to customers by driving increased energy efficiency. From the utility’s point of view they don’t have to estimate peak load, they just add up the connection sizes for each customer on each suburban transformer.

For consumers, especially small ones, being given the option to pay a network connection that’s just the right size is a great opportunity to save money and stop cross subsidising high electricity users.

Considering the Queensland government’s recent investigation into “Fair and Reasonable” Solar Feed-in Tariffs, it seems like offering customers the chance to pay only for the connection size they need will deliver great social benefits as well.

A further benefit is that inefficient and high draw devices like air-conditioners, electric storage hot water systems and pool pumps will be more closely scrutinised when customers can see the implications to their bills.

Under such a scheme Time of Use tariffs become effectively obsolete and utilities can continue to charge flat rate tariffs, which are far lower risk from a technology point of view.

Combined solar power and energy storage systems offer a clear path forward to make such skinny network connections a reality and deliver savings for both utilities and consumers. These systems produce solar power during the day with excess production “banked” for evening use. The integrated energy storage also acting as a buffer to ensure the network connection is never exceeded.

Advanced capabilities available with these energy management systems also include modern luxuries like customer web portals, household consumption monitoring and daily power production summaries. In the near future it’s expected that utility fleet management will also be rolled out to placate any fears the network operators might have.

Energy management systems featuring solar power and energy storage systems are the future for household electricity and now we just need skinny connections to unleash fat savings for frugal consumers and network operators alike.



Dane Muldoon is commercial sales director of Solar Guys, a Queensland company that installs solar panels and battery storage products.



Source: Renew Economy



Thursday, January 24, 2013

The Price of Storing the Sun: Solar Incentives for Energy Storage


Energy storage is too expensive for use in grid-tied residential solar. At least, that’s the current thinking. Though installing distributed storage in each home would help mitigate solar’s intermittent power supply, preventing large local spikes and drops in power supplied to the grid, it’s a tough financial case to make with traditional energy storage. Unlike off-grid solar, where energy storage is necessary to guarantee constant power, grid-tied energy storage mitigates system level issues caused by high concentrations of distributed renewable generation. To incentivize consumers to adopt storage as a way to mitigate this issue, a mechanism must be put in place to pass some of the value created by distributed, grid-tied storage from the system operator to end users.




Greentech Media recently published an interesting article covering this topic. They broke down some of the avoided costs and subsidies associated with residential solar systems:
SGIP: California’s Self-Generation Incentive Program (SGIP). SGIP offers $2 per watt for energy storage systems, which at a four hour discharge rate is equivalent to $500 per kWh.
Federal Tax Credit: This 30% tax credit applies to solar systems, but the real question is whether this could include the battery system as well. This shaves off about a third of the system costs.
Time of use benefits: In California, PG&E offers optional rate plans where users pay less if they reduce consumption during peak hours. Batteries can be combined with this plan to offer consumers substantial savings over time. According to the Greentech Media article, the benefits from this add up to about $500 per kWh over the lifetime of the batteries.

Theoretically, this would mean that a system could cost over $1400 per kWh, or $7000 for a 5 kWh system, and still provide a breakeven value proposition for consumers under the time of use pricingoffered by the CA system. By installing the system, they would get the added benefit of having a backup power supply in the event of a blackout. It should be noted that these numbers assume the ITC benefits could apply to an energy storage system.

Residential energy storage has multiple value streams that benefit both the end users and the utilities. Incentives like SGIP are an attempt to capture these benefits, but storage must be cheap enough to stand on its own, or it must be supported by a system that charges those who receive the value. Energy storage must pay for itself or it will never be a long-lasting solution.



Source: Aquion Energy

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