Public Consultations & Open Letters. One of the huge trends currently transforming the energy sector is digitalisation. The electricity sector is at the heart of this transformation, where digitalisation is blurring the distinction between generation and consumption, and enabling four interrelated opportunities: Direct energy consumption of digital technologies. Digitalisation in the Energy Sector - Questionnaire CONTEXT Within the Energy Union, three key targets and policy objectives have been established in light of the 2030 climate and energy framework of the EC: 40% cut in greenhouse gas emissions, 32% share for renewable energy and 32.5% improvement in … Digitalisation in the Energy Sector - Questionnaire CONTEXT Within the Energy Union, three key targets and policy objectives have been established in light of the 2030 climate and energy framework of the EC: 40% cut in greenhouse gas emissions, 32% share for renewable energy and 32.5% improvement in energy efficiency. Building system-wide resilience depends on all actors and stakeholders first being aware of the risks. Renewable energy and CO2 reduction have triggered a profound need for digital transformation of the energy sector. The oil and gas industry has long used digital technologies, notably in upstream, and significant potential remains for digitalisation to further enhance operations. Smart lighting can provide more than just light when and where it is needed; light-emitting diodes can also include sensors linked to other systems – for example, helping to tailor heating and cooling services. Depending on future efficiency trends, by 2021 electricity consumption from data networks could increase by as much as 70% or fall by up to 15%. What are Scope 3 emissions and why are they so important? As billions of new devices become connected over the coming years, they will draw electricity at the plug while driving growth in demand for – and energy use by – data centres and network services. However, it has not yet driven real transformation. In this new energy world, solar and digitalisation have emerged as a natural fit, as both help democratise and decentralise our electricity supply. Monitor the energy impacts of digitalisation on overall energy demand. From a utility perspective – it allows them to monitor the system, to determine where there’s pressure and to procure the services and solutions that they need in order to keep the system running. The sensors will be interconnected within the grid using two-way communication. Technically recoverable oil and gas resources could be boosted by around 5% globally, with the greatest gains expected in shale gas. And this is quite easy to explain. Data centres worldwide consumed around 194TWh of electricity in 2014, or about 1% of total demand. An ever increasing number of devices are being connected to the Internet: there will be around half a billion by 2030. The European Energy system is in transition towards clean energy and high efficiency. Response to consultation on ENTSO-E’s RDI Roadmap 2020-2030. smartEn responded to the ENTSO-E consultation on their RDI roadmap for the next ten years. New business models are emerging, while some century-old models may be on their way out. New tools such as blockchain could help to facilitate peer-to-peer electricity trade within local energy communities. The energy sector began integrating digital technologies in the 1970s and rightly so, because of its high resource levels, costs of failure and outages. The nitty-gritty of big data-based analytical tools and standardising, Practice and experience: Power industry reform, EEG investigates pandemic’s lockdown impact on utility revenue, Taking notes from a greening sustainable business, Water security from desalination: A story of technology innovation, Ifeoma Malo has just one goal: Ending energy poverty, Nigeria: C&I solar provider secures local currency debt facility, Practicalities of small-scale PV embedded generation in South Africa, Partnership cultivated to deliver solar-powered farming in Togo. 8. smartEn’s contribution to the consultation hosted by DG ENER on digitalisation in the energy sector. Post COVID-19, it will be imperative for innovative solutions to address Africa’s power crisis and implement a clear strategy for the continent’s recovery. Digitalisation is already improving the safety, productivity, accessibility and sustainability of energy systems. Op-ed: Hackers targeting IoT devices in manufacturing companies, Digitisation is a ‘must’ to manage the network’s complexity, Solar as a key enabler to the functioning of smart cities, Hydropower: The eco-friendly natural energy choice for Africa. The environmental objectives of the European Union for 2030 and 2050 will require technological improvements both in the electricity generation and in its management in the interconnected electricity systems of all countries, especially in terms of the demand and its flexibility. In 2018, the European commission set out in its communication a set of objectives and actions to realise its long-term vision for climate neutral economy. This article first appeared in ESI Africa Issue 3-2020.Read the full digimag here or subscribe to receive a print copy here. Build digital expertise within their staff. Energy Digital Magazine focuses on energy news, key … Full prevention of cyberattacks is impossible, but their impact can be limited if countries and companies are well-prepared. While there is no simple roadmap to show how an increasingly digitalised energy world will look in the future, the IEA recommends ten no-regrets policy actions that governments can take to prepare for digitalisation: 1. The energy sector began integrating digital technologies in the 1970s and rightly so, because of its high resource levels, costs of failure and outages. New tools such as blockchain could help to facilitate peer-to-peer electricity trade within local energy communities. During the past decade emphasis on energy efficiency and renewable energy has increased as a response to the environmental challenges, including greenhouse gas emissions. The digitalisation of the energy sector is essential to reach the 2050 objectives AleaSoft, December 4, 2020. One of the huge trends currently transforming the energy sector is digitalisation. While people are still figuring out whether to call or spell this phenomenon energy digitalisation, digitalization, digitisation or digitization, energy 4.0 or energy digital transformation, it is a disruptor, both on the commercial and the legal side. How digital technology is changing the energy sector. Digitalisation is changing the energy landscape. But digitalisation is also raising new security and privacy risks. To honour the Paris agreement and our 2030 targets, at least 27% of our energy – that’s close to 50% of electricity – will have to come from renewables by 2030. Data networks, which form the backbone of the digital world, consumed around 1,85TWh globally in 2015, or another 1% of total demand, with mobile networks accounting for around two-thirds of the total. How can digitalisation contribute to cost reductions and higher system integration for wind energy? This large range highlights the critical role of policy in driving efficiency gains. New digital tools can promote sustainability, including satellites to verify greenhouse gas emissions and technologies to track air pollution at the neighbourhood level. Digital resilience also needs to be included in technology research and development efforts as well as built into policy and market frameworks. This site uses cookies which are essential to make the site function effectively. In the coal industry, digital technologies are increasingly being used in geological modelling, process optimisation, automation, predictive maintenance, and to improve worker health and safety. For example, 3D printing can be used to make aircraft lighter, reducing both the materials to build the plane and the fuel to fly it. How many times have we heard that the most successful companies do not need to own anything? Here, Sean Robinson, service leader at utilities control system provider Novotek UK and Ireland, explores the latest … Direct energy use over the long run will continue to be a battle between data demand growth versus the continuation of efficiency improvements. In recent years, the digitalisation of energy has become a major priority in the evolution of the energy sector. Analysis indicates that in the power sector digitalisation has the potential to save around $80 billion per year, or about 5% of total annual generation costs. Digitalisation is already improving the safety, productivity, accessibility and sustainability of energy systems. 2. Solution to Integrate Variable Renewables” indicates digitalization as a major driver for innovation and solutions of the energy sector challenges. For example, digitalisation can assist in providing electricity to the 1.1 billion people who still lack access to it. BRICS Youth Energy Agency chairman, Aleksandr Kormishin, echoed Matai’s sentiments: “In terms of the global trends for young people in the industry. Download the full report at webstore.iea.org/download/direct/269. Digitalization in the energy sector The ongoing digitalization process is influencing our everyday life. Write CSS OR LESS and hit save. IEA estimates show that in the energy sector, digitisation can save around 5% of total annual generation costs. The International Energy Agency’s Digitalization & Energy report attempts to answer these questions. All energy demand sectors are feeling the effects. Provide a level playing field to allow a variety of companies to compete and serve consumers better. Although data centre workload is forecast to triple by 2020, related energy demand is expected to grow by only 3% thanks to continued efficiency gains. Specific examples include driverless trucks and tele-remote equipment operated from the control room. It is also changing markets, businesses and employment. This could save $270 billion of investment in new electricity infrastructure that would have otherwise been needed. WEF’s report on “ Cyber Resilience in the Electricity Ecosystem: Principles and Guidance for Boards ” calls for attention to the interconnectivity of the power system, in terms of both grid elements and associated stakeholders. Energy suppliers stand to benefit the most. Smart demand response could provide 185GW of system flexibility, roughly equivalent to the currently installed electricity supply capacity of Australia and Italy combined. Digitalisation provides new opportunities for suppliers by optimising their valuable assets, integrating renewable energies The pace of digitalisation in energy is increasing rapidly. European citizens are at the centre of this transition. Digitalisation of the energy system: why does it matter and how can Horizon 2020 contribute? Ardi Sutedja. Energy Digital Magazine is the ‘Digital Community’ for the oil & gas, utilities and renewable energy industry. Digitalisation is essential to keep this increasingly decarbonised, decentralised energy system running in a stable and affordable way. Incorporate digital resilience by design into research, development and product manufacturing. In this new energy world, solar and digitalisation have emerged as a natural fit, as both help democratise and decentralise our electricity supply. To date, the disruptions caused to energy systems by reported cyber-attacks have been relatively small. Digitalisation can help integrate variable renewables by enabling grids to better match energy demand to times when the sun is shining and the wind is blowing. This involves the application of new digital technology, such as low-cost cloud computing, the internet of things, big data analytics and blockchain to energy. 6. Digitalisation is helping transform the energy system by increasing recovery of resources and reducing costs of supply. It is also changing markets, businesses and employment. In buildings, the analysis shows that digitalisation could cut energy use by about 10% by using real-time data to improve operational efficiency. Widespread use of digital technologies could decrease production costs between 10% and 20%, including through advanced processing of seismic data, the use of sensors, and enhanced reservoir modelling. 4. Worldwide there are now more mobile phone contracts than people. Digitalisation is the revolutionary enabler for this transition of the energy sector; nobody can avoid it. Empowered by a wider choice of services, they are becoming active players – prosumers (consumers and/or producers) – keeping energy prices at an economic optimum. The energy sector is a relatively early adopter of digitalisation, with real-time monitoring equipment, automation and data analytics. In the residential sector alone, one billion households and 11 billion smart appliances could actively participate in interconnected electricity systems, allowing these households and devices to alter when they draw electricity from the grid. Build flexibility into policies to accommodate new technologies and developments. Important drivers of digitalisation in the energy sector Digitalisation means that many more physical components will be equipped with sensors to measure physical parameters related to energy use, the condition of components and more. The developers of a new initiative aimed at speeding up the level of innovation in the energy sector are also hopeful it will alter attitudes towards digitalisation. The energy sector began integrating digital technologies in the 1970s and rightly so, because of its high resource levels, costs of failure and outages. The greatest transformational potential for digitalisation is its ability to break down boundaries between energy sectors, increasing flexibility and enabling integration across entire systems. https://setis.ec.europa.eu/system/files/setis_magazine_17_digitalisation.pdf, Operational considerations for responding to the threat of cyber-attacks on critical energy infrastructure, Actions towards implementing the Integrated SET Plan, Smart Resilience and Secure Energy System, The digital transformation of energy: from energy silos to digitally interconnected systems, Digitalisation means more solar in Europe. However, sustained gains in energy efficiency could keep overall energy demand growth largely in check for data centres and networks over the next five years. Digitalisation in the energy sector involves the creation and use of computerised information and processing of the vast amounts of data which is generated at all stages of the energy supply chain. Digitalisation can facilitate the development of distributed energy resources, such as household solar PV panels and storage, by creating better incentives and making it easier for producers to store and sell surplus electricity to the grid. A variety of organisations are involved, each contributing its comparative strengths, including to share best practices and policies as well as to help mainstream digital resilience in energy policy making. Hammam Riza. Digitalisation has been referred to as one of the three main drivers for change in the energy sector – the ‘three D’s’ – along with decarbonisation and decentralisation (Di Silvestre et al., 2018). Policy and market design are vital to steering digitally enhanced energy systems onto an efficient, secure, accessible and sustainable path. In the transport sector, all modes of transport and their supporting infrastructure are becoming smarter and more connected, improving safety and efficiency. Let’s explore what this transformation actually means for the electricity network. 14.00 – 16.00 JKT Time. In some respects, the industry can embrace digitalisation as a key enabler of the transition to a low-carbon energy system. 3D printing, machine learning and connectivity could have even greater impacts. I’d say that they are more aligned with the challenges that the globe is facing today. Digitalisation could have its biggest impact on road transport, where connectivity and automation (alongside further electrification) could dramatically reshape mobility. But digitalisation is also raising new security and privacy risks. Opening Remark. 50 leading companies have announced their support for further digitalisation of the solar and energy sector. Founder & Chairman PJCI (Indonesia Smart Grid Initiative) Keynote Speaker. HOW DIGITALISATION CAN IMPACT AFRICA’S ENERGY SECTOR IN A POST-COVID WORLD. Digitalisation can facilitate the development of distributed energy resources, such as household solar PV panels and storage, by creating better incentives and making it easier for producers to store and sell surplus electricity to the grid. Here, we explore the latest technological development for the utility and energy sector. SolarPower Europe’s ‘Go Digital’ declaration was officially handed over to Megan Richards, Director of Energy Policy in DG Energy, European Commission at the SolarPower Summit 2018. While these technologies could improve efficiency, some could also induce rebound effects that increase overall energy use. Digital resilience also needs to be included in technology research and development efforts as well as built into policy and market frameworks. The EU is transforming its energy system into a more sustainable, renewables-based system, away from large-scale fossil fuel-based energy production. 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