In the medium term, digital technologies could be employed to improve data analysis and speed up data processing. Energy policy makers should be active in these inter-agency discussions to ensure energy sector perspectives and equities are taken into account. GE Power and the Digital Energy Transformation. Download Right click and do "save link as" Over the coming decades, digital technologies are set to make energy systems around the world more connected, intelligent, efficient, reliable, and sustainable. Digitalization across the energy landscape is determining the system-wide changes… Digitalization brings a new era of intelligence Mr. Liang predicted that by 2025, more than 30 percent of the global GDP will be generated by the digital economy and pointed out the key trends contributing to this revolutionary shift towards digital: This era will be dominated by crosscutting digital tools and platforms that can be applied to the energy Digital data and analytics can reduce power system costs in at least four ways: by reducing operations and maintenance costs; improving power plant and network efficiency; reducing unplanned outages and downtime; and extending the operational lifetime of assets. The importance of energy efficiency for a carbon neutral society. "Digitalization is blurring the lines between supply and demand," explains IEA Executive Director Fatih Birol. About 54% of households now have internet access at home. To date, the disruptions caused to energy systems by reported cyber-attacks have been relatively small. through learning algorithms that auto-programme heating and cooling services). In the not too distant future, digitalized energy systems will be able to determine who needs energy and have it delivered to the right place, at the right time, and at the lowest price. These attacks did not target energy infrastructure, but several energy companies reported problems. Conferences, workshops and exercises can also help. Digitalization and advanced analytics have the potential to usher in a new era for capital projects, one in which critical information can flow automatically among the many systems projects rely on. Digital resilience also needs to be included in technology research and development efforts as well as built into policy and market frameworks. But it also raises questions of security, privacy and economic disruption. adjusting temperature settings to lower energy demand at a particular time) and to store energy (e.g. 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. Workers supporting digital infrastructure will need specialised ICT skills, such as coding and cybersecurity, while across the energy sector, all workers will need generic ICT skills to operate digital technologies. 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%. By 2040, in the residential sector alone, 1 billion households and 11 billion smart appliances will "actively" participate in interconnected electricity systems, and will thus be able to decide to change when to draw electricity from the grid. 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. ... Utility digitalization: a new strategy to interact with customers. THE ROLE OF DIGITALIZATION IN DRIVING DEMAND FOR INDUSTRIAL DECARBONIZATION 8 Figure 2 Recent Growth Trends in Digital Energy Infrastructure Invesment Source: International Energy Agency A NEW ERA … What is now new is the extent of digitalization on the power system and energy market. Complementary “soft” skills such as leadership, communication and teamwork skills will become increasingly important for the growing number of opportunities for ICT-enabled collaborative work. This would provide further flexibility to the grid while saving between USD 100 billion and USD 280 billion (depending on the number of EVs deployed) in avoided investment in new electricity infrastructure between 2016 and 2040. But the energy industry can still thrive while protecting the planet if we invest in, and adopt, the revolutionary technologies necessary for this new era. Each year, it’s getting easier to immerse ourselves into the digital world – so much so, that it doesn’t even “feel” digital. The pace of digitalisation in energy is increasing. Digitalisation can help the development of distributed energy resources, such as household solar PV and storage, by creating better incentives and making it easier for producers to store and sell surplus electricity to the grid. Digitalization: A New Era in Energy •The energy system is on the cusp of a new digital era •This first-of-its-kind “Digitalization and Energy” report will help shine a light on digitalization's enormous potential and most pressing challenges •But impacts are difficult to predict; uncertainty in … This digital investment in 2016 was almost 40% higher than investment in gas-fired power generation worldwide (USD 34 billion) and almost equal to total investment in India’s electricity sector (USD 55 billion). In the residential sector alone, 1 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. Electricity demand growth in buildings has been particularly rapid over the last 25 years, accounting for nearly 60% of total growth in global electricity consumption. They are becoming networked, energy self-s Breaking News INTRODUCING A NEW ERA … Governments may also consider setting up equivalent digital "sandboxes" along the lines of fintech test zones developed in Australia, Indonesia and Singapore. The figures for digitalization make astonishing reading. The energy sector is used to thinking in terms of decades and the energy world is a slow-moving entity. Digital technologies are already widely used in energy end-use sectors, with the widespread deployment of potentially transformative technologies on the horizon, such as autonomous cars, intelligent home systems and additive manufacturing (3D printing). In the IEA Central Scenario, electricity use in buildings is set to nearly double from 11 petawatt hours (PWh) in 2014 to around 20 PWh in 2040, requiring large increases in power-generation and network capacity. Digitalization and the future of energy is an industry report which reveals the current attitudes to, and challenges and opportunities for digitalization in the energy industry. This is the first blog post in the Beamex blog series "Calibration in Times of Digitalization" we will take a look into the future to give you an understanding of hot topics such as Industry 4.0 and Smart Factory, which are on everyone's minds.You have probably heard … We are on the cusp of a new digital era in energy. Thank you for subscribing. Deployment of industrial robots is expected to continue to grow rapidly, with the total stock of robots rising from around 1.6 million units at the end of 2015 to just under 2.6 million at the end of 2019. If digitalization has a major role to play at plant level, the implications for the broader solar ecosystem are even more wide-ranging. Policy makers should consider how guidelines and mechanisms can enable sharing of data. Demand response, i.e. Digitalization: A New Era for Oil and Gas The Oil and Gas industry is no stranger to big data, technology and digital innovation. The magnitude of these potential impacts – and associated barriers – varies greatly depending on the particular application. Digitalization & Energy- A new era in energy 是在优酷播出的广告高清视频,于2017-12-03 11:06:02上线。视频内容简介:Digitalization & Energy- A new era in energy Beyond the next five years, providing credible assessments of energy use by digital technologies is extremely difficult. For example, one recent study quantified the energy and resource impacts of selected lightweight metallic additive manufacturing components in the US aircraft fleet, under different adoption scenarios to 2050. The next steps towards digitalization in the upstream oil and gas industry will initially focus on expanding and improving applications already in use. The overall savings from these digitally enabled measures could be in the order of USD 80 billion per year over 2016-40, or about 5% of total annual power generation costs based on the enhanced global deployment of available digital technologies to all power plants and network infrastructure. This report is based on a global survey 1 of 1,919 energy industry professionals, alongside in-depth interviews with market leaders and insight from business experts. Industry is responsible for around 38% of global final energy consumption and 24% of total CO2 emissions. April 04, 2018. In the long term, the oil and gas industry will be able to use robots and artificial intelligence for its operations. Overall, digitalisation is likely to lead to further efficiencies along the supply chain, but is less likely to replace still-sizeable labour needs for major engineering and construction activity related to physical infrastructure. Policy makers will need to balance privacy concerns with these other objectives, including promoting innovation and the operational needs of utilities. More than 3.5 billion people, or nearly half the global population, now use the Internet, compared to just 500 million in 2001. Together these trends are enabling a new era of energy digitalization. In the IEA Central Scenario, final energy consumption for transport grows by almost half to 165 exajoules in 2060, with most of the demand coming from road freight vehicles (36%) and passenger light-duty vehicles (28%). On average, investment in power plants would be reduced by USD 34 billion per year and that in networks by USD 20 billion per year. Renewables, distributed generation, and smart grids demand new capabilities and are triggering new business models and regulatory frameworks. October 12, 2020 By WLPGA. For instance, data on energy use in households collected by smart meters can be used to tell when someone is home, using the shower, or making tea. For example, these could include: electricity consumption data at a high level of detail in both space and time; information on installed distributed energy resources; and data about energy infrastructure. From intelligent asset management, to Artificial Intelligence and the Internet of Things. A new era in energy Over the coming decades, digital technologies are set to make energy systems around the world more connected, intelligent, efficient, reliable and sustainable. Policy-making processes can also benefit from more timely and sophisticated collection and publication of energy data that greater access to digital data could facilitate. World is a slow-moving entity makers should consider setting up and exploring a wide variety of real-world experiments that assist... 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