Electrical Power & Protection


Energy storage 2023: Current state and trends for the future

July 2023 Electrical Power & Protection

Energy storage systems come in many guises. Depending on the application, innovations, and availability, different types of energy storage technologies are currently available. Some examples include:

• Batteries.

• Pumped hydro storage.

• Flywheels.

• Compressed air energy storage.

• Thermal energy storage.

• Hydrogen storage.

Energy storage systems are becoming increasingly important as the world transitions to a more sustainable energy future. Innovation in energy storage systems can help reduce greenhouse gas emissions, improve grid stability and reliability, and increase energy access and security.

Energy storage is crucial for the further development of renewable energy sources and the decentralisation of energy generation because it helps to address the inherent intermittency of these sources, manage peak demand, improve grid stability and reliability, and facilitate the integration of small-scale renewable energy systems into the grid.

Intermittency of renewable energy sources: Renewable energy sources are inherently intermittent, meaning that they are not constantly generating energy, but depend on the availability of natural resources like the sun and wind. Energy storage makes it possible for excess energy to be stored when it’s highly available in peak production hours, to later be released when it’s needed, thereby smoothing out the variability of these energy sources.

Managing peak demand: Similarly, energy storage can help to manage peak demand by storing excess energy during off-peak hours and releasing it during times of high demand. This can reduce the need for additional generating capacity, and help avoid blackouts and brownouts.

Grid stability and reliability: Energy storage can improve grid stability and reliability by providing backup power during outages, and balancing the supply and demand of energy.

Decentralisation of energy generation: Energy storage can facilitate the decentralisation of energy generation by allowing small-scale renewable energy systems, such as rooftop solar panels, to store excess energy and feed it back into the grid when needed. This can increase energy independence and facilitate smart grids.

Four key drivers for energy storage systems

The increasing use of renewable energy sources is a major driver for energy storage systems. Given the intermittent nature of renewable energy sources, energy storage systems become key to help store excess energy during times of high generation, and release it when needed, making renewable energy more reliable and consistent.

Ageing infrastructure and growing demand for electricity are driving the need for grid modernisation. Energy storage systems can help to improve the reliability and stability of the grid, reduce the need for new power plants, and support the integration of distributed energy resources and the decentralisation of production.

Energy storage systems can help empower consumers and gain independence as they provide backup power during outages and reduce reliance on the grid.

The need to reduce greenhouse gas emissions and mitigate the impacts of climate change is driving the growth of renewable energy sources and energy storage systems. Integration and innovation in this sector can help battle the race to reduce the reliance on fossil fuels and promote a more sustainable energy future.

Five application trends for the energy storage systems sector

1. Lithium-ion: Plummeting costs, advanced batteries, and alternatives

In 2010, the cost of lithium-ion batteries was around $1100/kWh. By 2020, the cost had fallen to around $137/kWh, representing an 89% decline in just ten years. This trend is expected to continue, with some industry experts predicting that the cost of lithium-ion batteries could fall to as low as $60/kWh by 2030. The plummeting costs of lithium-ion batteries have made energy storage systems more cost-competitive with traditional grid infrastructure and have contributed to the growth of the energy storage industry. As the cost of lithium-ion batteries continues to decline, even greater adoption of energy storage systems can be expected.

However, while lithium-ion batteries have proven benefits like high energy density, long cycle life, low self-discharge rate, fast charging time, widespread availability, and established market, they come with their own downsides. Some of these are the limited raw material availability, risk of overheating and flammability, and environmental concerns related to extraction and disposal.

These concerns have also paved the way for the second major trend for energy storage systems.

2. Alternative battery technologies

As the trends continue to focus more on cleaner energies and safer alternatives, innovation for battery technology becomes a huge area of opportunity. With that in mind, a few recurring topics that are worth exploring for the future have been spotted.

• Solid-state batteries: these use a solid electrolyte instead of a liquid one, which can lead to higher energy density, faster charging, and improved safety.

• Redox flow batteries: these store energy in external tanks containing electrolytes, allowing for greater scalability and longer cycle life.

• Sodium-ion batteries: these use sodium ions instead of lithium ions, which are more abundant and cheaper to extract, although they have lower energy density and are less mature than lithium-ion batteries.

3. Energy Storage as a Service (ESaaS)

ESaaS providers install and operate the energy storage systems on behalf of customers, who pay a monthly or annual fee for the service. This allows customers to benefit from the advantages of energy storage without the upfront capital investment or ongoing maintenance costs associated with owning and operating the systems. ESaaS providers may also offer additional services such as energy management and optimisation to further enhance the value proposition for customers. The ESaaS model is gaining traction in various markets, including commercial and industrial, residential, and utility-scale applications, and is expected to continue to grow as the energy storage market expands.

4. Portable electronic devices

The energy density, cycle life, and charging time of batteries are key factors that determine the performance and user experience of portable electronic devices. The development of new battery chemistries promises to deliver improvements in these areas, resulting in a wide range of innovation possibilities as portable electronic devices increasingly become a part of daily life.

5. E-mobility

EVs rely on rechargeable batteries to store energy and power their electric motors. The energy density, charging time, and lifespan of these batteries are crucial factors that affect the performance, range, and durability of EVs. Energy storage solutions are also necessary for the deployment of charging infrastructure, including fast-charging stations, which require large amounts of power in short periods of time. Energy storage can help to mitigate the variability and intermittency of renewable energy sources, such as wind and solar, which can be integrated into the EV charging ecosystem to further reduce carbon emissions and improve energy efficiency. As the EV market continues to grow, advancements in battery technology, charging infrastructure, and energy management systems will be essential to further improve the performance and affordability of EVs and accelerate the transition to a more sustainable transportation system.

Conclusion

Energy storage systems are essential for the further development of renewable energy sources and the decentralisation of energy generation. As technology continues to improve and costs continue to decline, energy storage is poised to play an increasingly important role in the transition to a more sustainable and resilient energy system.


Credit(s)



Share this article:
Share via emailShare via LinkedInPrint this page

Further reading:

Grid to backup power in zero seconds
Electrical Power & Protection
South Ocean Electric Wire has completed a solar installation that marks a global first: a seamless switch from grid to backup power in zero seconds.

Read more...
Three decarbonisation myths and how organisations can debunk them
Schneider Electric South Africa Electrical Power & Protection
A UN Climate Change Report revealed that the world is on track to miss its 2050 net zero targets, with temperatures expected to increase by over 2,4°C by 2100. To help shift positive intent to concrete action, Schneider Electric outlined three of the most common myths surrounding decarbonisation and how organisations can get started on their decarbonisation journey.

Read more...
Tackling the barriers of renewables and empowering the manufacturing sector
Electrical Power & Protection
Solar energy is surging in South Africa, but the energy is primarily self-consumed, meaning many manufacturing sites draw power directly and don’t gain more energy independence through comprehensive energy storage or hybrid energy solutions.

Read more...
Three-phase filters for electromagnetic interference
Vepac Electronics Electrical Power & Protection
Vepac Electronics has available three-phase filters that provide a solution to electromagnetic interference generated by equipment or from an AC source.

Read more...
The age of grid defection is upon us
Electrical Power & Protection
Solar and battery systems have got so cheap that many private individuals, farmers and companies are waking up to the fact that in many locations in South Africa it is now less expensive to be off the electrical grid than to be on it.

Read more...
Measure the electrical performance of your machinery
Vepac Electronics Electrical Power & Protection
The TELE eCap from Vepac Electronics allows you to use energy wisely and reduce operational expenses.

Read more...
Connectors for quick, easy and tool-free in-field termination
Electrical Power & Protection
KYOCERA AVX has released the new 9288-000 Series hermaphroditic wire-to-wire and wire-to-board connectors for lighting and industrial applications. These unique two-piece connectors facilitate WTW termination with two identical mating halves, which simplifies BOMs.

Read more...
Biomass is building up steam
Electrical Power & Protection
Pressure is mounting for local manufacturers to swap fossil fuels for biomass to reduce their carbon footprints and mitigate carbon taxes. Experienced steam and boiler operations and maintenance service provider, Associated Energy Services has spent the past 14 years reviewing solutions.

Read more...
Würth Elektronik expands its power module series
Electrical Power & Protection
Würth Elektronik has expanded its successful MagI³C-VDLM power module series with two new models that further enhance the performance of the existing portfolio of compact DC/DC power supply modules.

Read more...
The journey towards renewable energy in the Seychelles
Electrical Power & Protection
The Seychelles is committed to its ambitious goal of achieving net-zero carbon emissions by 2050. Recent technological advancements and strategic planning are steadily paving the way for a more sustainable future.

Read more...









While every effort has been made to ensure the accuracy of the information contained herein, the publisher and its agents cannot be held responsible for any errors contained, or any loss incurred as a result. Articles published do not necessarily reflect the views of the publishers. The editor reserves the right to alter or cut copy. Articles submitted are deemed to have been cleared for publication. Advertisements and company contact details are published as provided by the advertiser. Technews Publishing (Pty) Ltd cannot be held responsible for the accuracy or veracity of supplied material.




© Technews Publishing (Pty) Ltd | All Rights Reserved