Victoria energy storage technologies

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The Energy Storage Initiative supported energy storage technologies and

Victoria welcomes investment in a range of energy storage technologies, including

Today (29 August), the Victoria government announced it has streamlined the planning process to deliver the state''s "largest" battery energy storage system (BESS), ACEnergy''s 350MW/700MWh Joel Joel project.

The project has become the first to be fast-tracked by Victoria''s minister for planning Sonya Kilkenny with it having been processed under the new process in nine weeks. According to the project website, the development approval was estimated to take 18 months.

Located around 23 km east of Stawell in the Wimmera region of Victoria, Australia, the project is expected to begin construction in the second quarter of 2025, ahead of energisation in 2027. It will cover 10 hectares of land.

It is expected to cost around AUS$250 million (US$170 million) and will store energy and release it into the grid during peak demand via a connection at Bulgana Terminal Station. This will support the integration of more renewable energy into Victoria’s electricity network and put downward pressure on power prices.

Victoria previously established energy storage targets of at least 2.6GW of energy storage capacity by 2030 and at least 6.3GW by 2035. At the time, it was dubbed as one of the most ambitious targets globally.

This energy storage target complements its existing renewable energy generation target, which aims to have 95% renewable energy in the energy mix by 2035.

Victoria''s minister for energy and resources, Lily D’Ambrosio, said streamlining the planning approval process for projects such as the Joel Joel BESS will be crucial for grid stability as Victoria''s coal-fired power plants begin to close.

Kilkenny added: "This streamlined process allows us to bring good renewable projects like battery storage systems online faster so that we can provide more Victorians with cheaper and cleaner energy."

Readers of Energy-Storage.news may be aware that ACEnergy recently saw its voluntary planning agreement for its 250MW/1,100MWh Yanco BESS rejected by the Leeton Shire Council in New South Wales.

For the project''s construction, ACEnergy will be required to pay a development levy for the project, as specified in Leeton Shire Council’s Section 7.12 Plan. This levy amounts to 1% of the development cost, so in this instance, ACEnergy will be required to pay the council AUS$2.5 million.

In a bid to reduce this amount ACEnergy, the developer submitted a voluntary planning agreement. This deal would have seen the company pay AUS$730,000 over five years – 29% of the traditional agreement.

The council rejected the proposal, stating that the 1% developer contributions would significantly help in funding public facilities and addressing long-term development pressures. The council also considered the figure to be a “reasonable amount relative to the size of the project.”

Eku Energy, Shell Energy, and Perfection Private

Preconstruction activities began in July of the same year, with an official sod-turning ceremony.

Commercial operations are expected to commence in late 2024. Shell Energy will have access to the battery’s entire offtake for 20 years.

Once operational, the Rangebank BESS will have the capacity to power 80,000 Victorian homes for one hour during peak times, which is equivalent to supplying five hours of energy to 31,000 households in Cranbourne.

The project will help Victoria meet its energy storage targets of 2.6GW by 2030 and 6.3GW by 2035, aiding the state’s decarbonisation efforts.

The Rangebank BESS is being constructed on 2ha of land within the Rangebank Business Park at 280S Evans Road, Cranbourne West, Victoria.

The BESS site is located in the southeast quadrant of the 20ha property, for which a two-lot subdivision has been approved.

The Rangebank BESS will deliver 200MW/400MWh of dispatchable power over two hours using Fluence Energy’s Gridstack™ grid-scale energy storage system.

The BESS features a modular design, consisting of an array of equipment that includes batteries, core transformers, inverters, and a large transformer.

Additionally, there will be several small service buildings situated at the centre of the site.

The battery storage units will be configured within a series of rows, with each row containing the cube storage units, light poles, and an inverter.

About Victoria energy storage technologies

About Victoria energy storage technologies

As the photovoltaic (PV) industry continues to evolve, advancements in Victoria energy storage technologies have become critical to optimizing the utilization of renewable energy sources. From innovative battery technologies to intelligent energy management systems, these solutions are transforming the way we store and distribute solar-generated electricity.

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By interacting with our online customer service, you'll gain a deep understanding of the various Victoria energy storage technologies featured in our extensive catalog, such as high-efficiency storage batteries and intelligent energy management systems, and how they work together to provide a stable and reliable power supply for your PV projects.

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