20 de dezembro de 2020

Policy and market design are vital to steering digitally enhanced energy systems onto an efficient, secure, accessible and sustainable path. The figures for digitalization make astonishing reading. With regards to electricity, 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. And, he points out, "while the electricity sector and smart grids are at the center of this transformation, ultimately all sectors across both energy supply and demand will be affected." Tags: automation COVID-19 digitalization green practices reducing shipping emissions seafarer's rights SMM wind … The application of digital monitoring and control technologies in the power generation and transmission domains has been an important trend for several decades. Considerations of security, privacy, economic disruption and other concerns will also need to be taken into account. Digitalization brings a new era of intelligence Mr Liang predicted that by 2025, more than 30 per cent of the global GDP will be generated by the digital economy and pointed out the key trends contributing to this revolutionary shift towards digital: To date, the disruptions caused to energy systems by reported cyber-attacks have been relatively small. For instance, if lifetime of all the power assets in the world to be extended by five years, the close to USD 1.3 trillion of cumulative investment could be deferred over 2016-40. In the medium term, digital technologies could be employed to improve data analysis and speed up data processing. Policy makers should consider how guidelines and mechanisms can enable sharing of data. Digital data and analytics can reduce O&M costs, enabling predictive maintenance, which can lower costs for the owner of plants and networks and ultimately the price of electricity for end users. This ratio is going to be reversed by 2040, experts say. It is acknowledged that each country is different in many ways that are relevant to digitalisation's increasing impact on energy systems; nonetheless, there are lessons to be learned from the experiences of other governments and jurisdictions. 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. The next steps towards digitalization in the upstream oil and gas industry will initially focus on expanding and improving applications already in use. The digital transformation in commodities and energy trading has been made possible by the increase in information available to trading firms and the speed at which they are able to process this data by employing digital tools and analytics platforms. 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 … The International Energy Agency (IEA) recently completed its first ever analysis to comprehensively depict how digitalization is reshaping the energy sector and to provide more clarity for decision makers on what digitalization means for the energy sector – http://www.iea.org/digital/. Rapidly advancing digitalization in building technology is changing the vision for buildings of the future. At the dawn of the digital era, we imagined bureaucracy and paperwork would be reduced 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%. These lessons can include both positive case studies as well as more cautionary tales. The digitalization of the power infrastructure is not a new idea. Stunning advances in data, analytics and connectivity are enabling a range of new digital applications such as smart appliances, shared mobility, and 3D printing. Find out about the world, a region, or a country, Find out about a fuel, a technology or a sector, Explore the full range of IEA's unique analysis, Search, download and purchase energy data and statistics, Search, filter and find energy-related policies, Shaping a secure and sustainable energy future, All energy demand sectors are feeling the effects, Energy suppliers will reap greater productivity and improve safety, Fundamentally transforming electricity via digitally-interconnected systems, Energy use by information and communications technologies, Read more about automation, connectivity, electrification and sharing (ACES), Clean Energy Transitions in Emerging Economies, Digital Demand-Driven Electricity Networks Initiative, Global Commission for Urgent Action on Energy Efficiency, Promoting digital demand-driven electricity networks, Shamoon 1 and 2 (Saudi Arabia, 2012 and 2016). The increased availability of low-cost sensors and computer-aided simulations will bring new opportunities, but the overall impact of digitalization on coal will be less significant than in other sectors. In the last five years, global mobile phone subscriptions have increased threefold, and today there are more contracts with mobile phone providers (7.7 billion) than people in the world. While it is expected that digitalisation in industry will continue in an incremental manner in the near term both inside individual plants as well as beyond the plant fence, some digital technologies may have far-reaching effects on energy use in certain areas, especially when they are applied in combination. As explored throughout this report, there is no way to predict with certainty how particular digital technologies will interact with specific energy system applications, especially in complex real-world situations that involve multiple policy objectives and uncertain (and sometimes unintended) feedbacks. Global investment in digital electricity infrastructure and software, for example, has grown annually by 20 percent since 2014, reaching USD 47 billion in 2016. Recent studies estimate a wide range of possible outcomes. The EU's "Energy Union" strategy and the recent CoP 21 strengthen the energy policy axes of security of supply, sustainability and competitiveness, together with the need to invest in research and innovation to embrace the necessary changes. At the same time, aggregated and anonymised individual energy use data can improve understanding of energy systems, such as load profiles, and help lower costs for individual consumers. More Platform Posts >> With the digitalization of the energy landscape, companies’ blind spots are increasing. Indeed, thanks to a cascade of innovative breakthroughs, we are now in the dawn of a New American Energy Era…an era in which the world enjoys vastly improved energy choice…and in which we are able to embrace new and smarter ways to reach our energy and our environmental goals. 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. Digitalised energy systems in the future may be able to identify who needs energy and deliver it at the right time, in the right place and at the lowest cost. 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. 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 is blurring the lines between supply and demand," explains IEA Executive Director Fatih Birol. Finally, digital technologies could help integrate higher shares of variable renewables into the grid by better matching energy demand to solar and wind supplies. Digitalized energy systems in the future may be able to identify who needs energy and deliver it at the right time, in … The pace and extent of digitalisation and its impacts on jobs in the energy system remain highly uncertain, and will depend on a number of factors that will vary across regional and sectoral contexts. Other examples are the use of automated drilling rigs and robots to inspect and repair subsea infrastructure and to monitor transmission pipelines and tanks. For digitalization to have real impact, however, it must be integrated across the whole business. Together these trends are enabling a new era of energy digitalization. From intelligent asset management, to Artificial Intelligence and the Internet of Things. This list is not intended to be exhaustive or definitive, and recognises that national circumstances and contexts vary between countries. 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. 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. For instance, 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. Automated driving technologies can improve safety and driving convenience through advanced sensing and automated decision-making capabilities that can assist or replace human control. The IEA’s latest report, Digitalization & Energy, is the first-ever comprehensive effort to depict how digital technologies could transform the world’s energy systems. You’ll hear how the grid is more distributed and interconnected than ever before, leaving you to defend your assets in the dark while attackers shine a light on your entire OT and/or IT system to exploit new … For example, digitalisation can assist in providing electricity to the 1.1 billion people who still lack access to it. As the world becomes increasingly digitalised, information and communications technologies (ICT) are emerging as an important source of energy demand in their own right. Digitalization can improve safety, increase productivity and reduce costs in the oil and gas, coal, and electricity sectors. The pace of digitalisation in energy is increasing. Data collection and exchange are growing exponentially, creating digital threats but … fulfilling new functionalities. Cybersecurity They are interlinked as, for example, demand response will be critical to providing the flexibility needed to integrate more generation from variable renewables. The importance of energy efficiency for a carbon neutral society. The most revolutionary changes from digitalisation could come in road transport, where ubiquitous connectivity and automation technologies could fundamentally transform how people and goods are moved. Policy makers will need to balance privacy concerns with these other objectives, including promoting innovation and the operational needs of utilities. 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 … Source: Accenture Digital Energy Trends¹ There is growing consensus that the Oil and Gas industry is on the cusp of a new era, as a wave of business and digital technologies looks set to reshape the sector, propelled by a series The industrial sector has used process controls and automation for decades, particularly in heavy industry, to maximise quality and yields while minimising energy use. 本プレスリリースは発表元が入力した原稿をそのまま掲載しております。 New tools such as blockchain could help to facilitate peer-to- peer electricity trade within communities. 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: These attacks did not target energy infrastructure, but several energy companies reported problems. Digital technologies are being used throughout the coal supply chain to reduce production and maintenance costs, and improve workers’ safety. Oil and gas companies have long used digital technologies to improve decision making for exploration and production assets, including reservoirs and pipelines. The recent IEA report, the Future of Trucks, found that applying digital solutions to truck operations and logistics could reduce road freight’s energy use by 20-25%. If digitalization has a major role to play at plant level, the implications for the broader solar ecosystem are even more wide-ranging. They are becoming networked, energy self-s Breaking News INTRODUCING A NEW ERA … Digitalisation’s overall impact, however, may be more modest than in other sectors. In China, over 20 000 China National Petroleum Corporation (CNPC) petrol stations went offline. Accordingly, governments should consider setting up and exploring a wide variety of real-world experiments that can yield "learning by doing". It used targeted email messages containing fake Microsoft Word résumés for engineering jobs, potentially exposing recipients’ credentials for the control engineering network. This incident occurred in the United States. Data centres worldwide consumed around 194 terawatt hours (TWh) of electricity in 2014, or about 1% of total demand. This attack did not target or impact energy infrastructure, but illustrates the vulnerability of the Internet of Things (IoT). 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. We need an appropriate, reliable and secure communication system if the power system is to be operated with Dispersed Energy Resources (DER) in a dynamic way. Digitalization: A New Era for Oil and Gas The Oil and Gas industry is no stranger to big data, technology and digital innovation. Today, change is being driven by three trends: decentralization, connectivity, and automation. 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. Stunning advances in data, analytics and connectivity are enabling a range of new digital applications such as smart appliances, shared mobility, and 3D printing. Digitalization has the potential to enable a true “smart grid,” which uses battery storage and the “smart” release of renewable-generated energy, as … through learning algorithms that auto-programme heating and cooling services). While digitalisation can bring many positive benefits, it can also make energy systems more vulnerable to cyber-attacks. While energy infrastructure can be expected to last 50 years or more in many instances, software, applications, and even ICT hardware turns over quickly. For example, digital data can revolutionise an evolving process known as “data fusion”, in which datasets are created which are far more powerful than a simple sum of their parts. 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 … Impact of smart versus standard charging EVs. Industroyer/Crash Override (Ukraine, December 2016 – reported May 2017). 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. The New Era of Energy: Reinforcing Energy Industry Through Digitalization Transformation An opportunity for student associations to improve themselves, to develop new innovations, and to expand their connections with future petroleum engineers to be technically advanced, socially informed, and supplied with the ability to strive. 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 The impact of these tremendous digital advances and their rapid deployment across the energy landscape raise the fundamental question of whether we are on the cusp of a new digital era in energy. Digital technologies –from connected digital devices in households throughout the world and automation in industrial production processes to smart mobility– are deeply altering how, where and when energy is consumed. If fully adopted, in 2050 this could avoid nearly 20 000 tonnes/year of metal demand and reduce the overall fuel use of the US aircraft fleet by up to 6.4%. Digital technologies are being used throughout the coal supply chain to reduce production and maintenance costs, and enhance workers’ safety. The New Era of Energy: Reinforcing Energy Industry Through Digitalization Transformation An opportunity for student associations to improve themselves, to develop new innovations, and to expand their connections with future petroleum engineers to be technically advanced, socially informed, and supplied with the ability to strive. Big data analytics optimise route planning and can help pilots make in-flight decisions and reduce fuel use. In the European Union alone, increased storage and digitally-enabled demand response could reduce curtailment of solar photovoltaics (PV) and wind power from 7% to 1.6% in 2040, avoiding 30 million tonnes of carbon dioxide emissions in 2040. 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. Nuclear plant spear phishing attack (US, 2017). 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. shifting the time of use of a washing machine), to shed loads (e.g. Digital technologies, data analytics and automation will be increasingly adopted to improve productivity while enhancing safety and environmental performance through multiple applications. It is hoped it will foster further discussion among governments, companies and other stakeholders. 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. Energy policy makers should be active in these inter-agency discussions to ensure energy sector perspectives and equities are taken into account. Digital energy security should be built around three key concepts: International efforts can also help governments, companies and others to build up digital resilience capabilities. This reduces costs and increases the resilience and reliability of supply. This approach is particularly important in electricity where the transition to smart energy systems may require significant changes in market design. adjusting temperature settings to lower energy demand at a particular time) and to store energy (e.g. They will depend on the combined effect of changes in consumer behaviour, policy intervention, technological progress and vehicle technology. This inertia is more pronounced in markets that were deregulated and disaggregated in a different technology era than in regulated vertical markets where the costs and benefits are concentrated. Digitalization across the energy landscape is determining the system-wide changes… To learn more about cookies and their benefits, please view our privacy policy.Please be aware that parts of this site will not function correctly if you disable cookies. Economies of scale for clean energy generation are rapidly transforming the grid. The pace of digitalization in energy has increased dramatically in recent years. Understanding consumer behaviour and being always up-to-date in monitoring the energy efficiency of new energy-using devices will be increasingly important. New tools such as blockchain could help to facilitate peer-to-peer electricity trade within local energy communities. Over the longer term, it is conceivable that most electrical devices – and even some consumer items such as clothing – could become connected IoT devices, using energy to collect, process, store, transmit and receive data. These are the conclusions of a recent report compiled by the International Energy Agency (IEA) titled "Digitalization and Energy". Jobs composed of a high share of automatable tasks – such as those involving predictable, routine and repetitive physical activities, and the collection and processing of data – may be at higher risk of automation than those with less routine activities. 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. Digitalization is emerging as a technological driver of change around the world and provides businesses with abundant opportunities for growth and monetary gain. What is new, is the pace of digitalization occurring through technological innovation, providing solutions that enable the energy system to be transformed? About 54% of households now have internet access at home. Over the coming decades, digital technologies are set to make energy systems around the world more connected, intelligent, efficient, reliable, and sustainable. Drive further efficiency gains the 1.1 billion people who still lack access to data associated barriers – greatly! 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