The French Development Agency AFD has agreed to provide 100 million euros in loan to Bangladesh for the digitalisation of the country’s power and energy sector. Over the long term, under a best-case scenario of improved efficiency through automation and ride-sharing, energy use could halve compared with current levels. This can be achieved by reducing operating and maintenance costs, improving the efficiency of a power plant and network operations, reducing unplanned outages and extending the life of assets. 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 in the energy sector 5th December 2018 Jon Lawson The process of identifying and managing energy demand was one of the first to adopt computer technology and the internet. Build flexibility into policies to accommodate new technologies and developments. All energy demand sectors are feeling the effects. 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. Digitalisation is already improving the safety, productivity, accessibility and sustainability of energy systems. This could save $270 billion of investment in new electricity infrastructure that would have otherwise been needed. Rolling out smart charging technologies for electric vehicles could help shift charging to periods when electricity demand is low and supply is abundant. In this new energy world, solar and digitalisation have emerged as a natural fit, as both help democratise and decentralise our electricity supply. Participate in broader inter-agency discussions on digitalisation. Energy Digital. 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. Head of BPPT (Agency for the Assessment & Application Technology), Ministry of Research & Technology, Indonesia. Ensure appropriate access to timely, robust, and verifiable data. Opening Remark. The pace of digitalisation in energy is increasing rapidly. In recent years, the digitalisation of energy has become a major priority in the evolution of the energy sector. 7. One example of this is the use of drones to cheaply monitor thousands of kilometres of transmission lines over rough terrain. Policy Webinar: Digitalisation in the Energy Sector. Digitalisation is changing the energy landscape. The energy sector is already using data in sophisticated ways to meet a wide range of challenges, from fault prediction in grid networks to the delivery of personalised energy to households. 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. Digitalisation is making inroads into every sector and energy is not immune to this disruption. Data centres worldwide consumed around 194TWh of electricity in 2014, or about 1% of total demand. 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. In the power sector, the analysis indicates that digitalisation has the potential to save around $80 billion per year, or about 5% of total annual power generation costs. For example, digitalisation can assist in providing electricity to the 1.1 billion people who still lack access to it. HOW DIGITALISATION CAN IMPACT AFRICA’S ENERGY SECTOR IN A POST-COVID WORLD. Experiment, including through ‘learning by doing’ pilot projects. New business models are emerging, while some century-old models may be on their way out. Beyond the next five years, providing credible assessments of energy use by digital technologies is extremely difficult. How can digitalisation contribute to cost reductions and higher system integration for wind energy? 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. Digitalisation provides new opportunities for suppliers by optimising their valuable assets, integrating renewable energies © All content copyright 1997 - 2020 Clarion Energy, unless specified otherwise. The International Energy Agency’s Digitalization & Energy report attempts to answer these questions. Solution to Integrate Variable Renewables” indicates digitalization as a major driver for innovation and solutions of the energy sector challenges. Download the full report at webstore.iea.org/download/direct/269. “Energy & Digitalisation: Artificial Intelligence (AI) Application in Energy Sector” 24 July 2020. 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, 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 of the Energy sector Digitalising the energy sector is crucial for the EU since it enables energy consumers to be at the centre and contributes to a new design for the energy markets. This site uses cookies which are essential to make the site function effectively. Digital technologies that make all these potential benefits possible also use energy. 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. This can be achieved by reducing operation and maintenance costs, improving power plant and network efficiency, reducing unplanned outages and downtime, and extending the operational lifetime of assets. re.alto, a corporate startup from Belgium’s Elia Group, is aimed to bring together providers and users from across the energy sector to make data easy to access and integrate. Full prevention of cyberattacks is impossible, but their impact can be limited if countries and companies are well-prepared. Today, the biggest use of digital technologies like sensors, data collection and analytics in the energy sector is to improve the bottom line of fossil fuel generators. 50 leading companies have announced their support for further digitalisation of the solar and energy sector. Digitalisation is essential to keep this increasingly decarbonised, decentralised energy system running in a stable and affordable way. I’d say that they are more aligned with the challenges that the globe is facing today. 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). 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