The increasing concerns about the environmental effects of traditional energy sources and fossil fuels finite live, have shifted emphasis to renewable energy sources [1, 2].These latter significantly contribute to reducing greenhouse gas (GHG) emissions and traditional energy consumption based primarily on electric grid supply [3].Recent statistics
Focused on the development of lightweight, high efficiency, hydrogen fuel cell systems. We''re one of the world''s leading hydrogen fuel cell manufacturers, delivering a range of zero-emission hydrogen fuel cell products – from 800W to over 300kW – to automotive, aerospace, power generation, telecoms, marine, rail, UAV and materials handling industries.
Intelligent Energy Systems In recent years, digital platforms have emerged in many businesses to bring customers and providers together and to offer innovative services. The term platform is used very frequently in this context, but its meaning is not clear and uniform [32]. On the one hand, IT platforms are already being used today for the
IE-POWER 4 stationary fuel cell. IE-POWER™ 4 is Intelligent Energy''s fuel cell module for power generation applications, such as stationary power, micro-grids, telecoms, and critical infrastructure.. Running on hydrogen and oxygen from the air, the IE-POWER 4 stationary fuel cell is designed as a self-contained power solution with all requisite balance-of-plant components
The SIE-Togo is a digital platform designed to enhance data sharing, reduce entry errors, and speed up processing times. The system aims to prevent information loss and improve data quality, which is crucial for
The only all-in-one monitoring and control software for renewable energy that includes energy storage management, power plant controller, and microgrid compatibility. Unique tiered pricing model makes Acuity affordable for small C&I projects, behind the meter applications, all the way up to large utility-scale facilities.
Moreover, in-depth research on refining the mechanism, rules, and knowledge of sustainable energy systems is needed for intelligent operation based on data. To develop high-quality intelligent electricity services, it is necessary to develop advanced digital technology to build sustainable energy systems as well as power edge computing core
2 INTELLIGENT BUILDING ENERG MANAGEMENT SYSTEMS Intelligent Building Energy Management Systems Continental Automated Buildings Association 2020 Acknowledgements Harbor Research and CABA would like to acknowledge and sincerely thank the following Steering Committee members for funding, guiding, and participating in this research:
Author Nkado (2021) investigated the feasibility of integrating a photovoltaic-battery energy storage (PV-BES) system into the existing diesel generator system to reduce the community''s total dependence on conventional energy while improving the reliability of the microgrid. The study also minimizes the levelized cost of energy (LCOE) and
You''ll save 70% smart charging with Intelligent Octopus Go compared to a standard tariff. With Intelligent Octopus Go you can smart charge for only 7p/kWh. The average rate of a standard variable tariff, based on the
Winner of the 2022 "Tremplin Start-up" competition of the West African Economic and Monetary Union (WAEMU), entrepreneur Nadjagou Lalle Yentaguime is supporting rural electrification in Togo with his intelligent solar
For instance, energy management systems in the context of electric vehicles (Liu et al., 2020), IoT''s (Golpîra and Bahramara, 2020), intelligent transportation (Yang et al., 2020), photo-voltaic systems (Langer and Volling, 2020), and virtual power plants (Sheidaei and Ahmarinejad, 2020) are also emerging topic in the intelligent energy
Climate change has become a major problem for humanity in the last two decades. One of the reasons that caused it, is our daily energy waste. People consume electricity in order to use home/work appliances and devices and also reach certain levels of comfort while working or being at home. However, even though the environmental impact of this behavior is
This paper presents the Intelligent Energy Systems Ontology (IESO), which provides semantic interoperability within a society of multi-agent systems (MAS) in the frame of PES. It leverages the knowledge from existing and publicly available semantic models developed for specific domains to accomplish a shared vocabulary among the agents of the
Nadjagou Lalle Yentaguime, the winner of "Tremplin Start-up", develops solar panels in Togo. The Solar Tracker increases the energy efficiency of solar streetlights, and the Panel Cleaner activates an automatic cleaning mechanism for
This premise differentiates Intelligent Energy Group from other energy service firms. The founding partners and their colleagues have over 100 years of experience among them in lighting, lighting controls, window systems and energy conservation.
The origins of Intelligent Energy began at Loughborough University in the UK during the late 1980s, [1] when the University became one of Europe''s first research and development centres for proton-exchange membrane (PEM) fuel cell technology. In 1995, the UK''s first kW-level PEM fuel cell stack was produced by the R&D team. In June of that year, Advanced Power Sources
Integrating energy systems in an intelligent way is a critical skill for the engineers, project managers, planners, policymakers, and scientists of the future. The program "Intelligent and Integrated Energy Systems" comes at the right time to tackle the challenges and complexities of today''s energy systems. It discusses the energy system
Expertise and services in energy efficiency . For many years, Fraunhofer IPA has been working on solutions to improve efficiency in numerous fields of technology (e.g. energy systems, coating technology, surface engineering, factory design, robotics and machine construction), as well as on planning and control methods and automation technology:
In Togo, household energy consumption is characterized by a very strong predominance of the Biomass. According to the 2017 report of the Togo Energy Information System (SIE), the share of biomass-energy reaches 76% of the
1. Digital Power and Energy Systems (DigiPES): We explore the integration of digital technologies into power and energy systems. From advanced sensing and monitoring to data analytics and control algorithms, we strive to develop intelligent solutions that enhance system performance, reliability, and efficiency 2.
Multi-source systems always require an intelligent energy management, which must be integrated into the power system. For e.g., in Togo, the regulation authorizes, through the Law N°2018–010 of August 8, 2018 and Decree No. 2019–021 of February 13, 2019, the production, distribution and marketing of renewable energy.
The group "Data Analytics" helps our partners and customers to get the most out of their data in the context of IoT and Industry 4.0. The group takes an application-oriented approach that includes system analysis, conception, data collection, filtering, clustering, and finally the development and implementation of intelligent algorithms in industrial processes or in
The agreement was initialed last week in London, by Togo''s Prime Minister Victoire Dogbé and Commonwealth Secretary-General Patricia Scotland. The partnership will focus on artificial intelligence, digital transformation, renewable energy, climate finance, and enhancing skills and human capital.
China launched an intelligent energy system, the country''s first "smart brain" able to realize the coordinated management of dozens of energy sources at the same time, in Beijing on Friday. Known as Tianshu-1, the system, developed by the State Power Investment Corporation (SPIC), integrates the functions of energy monitoring, forecasting
intelligent energy management and control systems (EMS) can enhance the efficient use of electricity and maintain the balance between supply and demand by using energy forecasting and storage
This paper aims to study the construction and application of intelligent energy management system in pharmaceutical factories, and analyze its structure, function, implementation effect and future development trend. References [1] Erheng chen, Huajun Cao, Qinyi He, Jiahao Yan, Salman Jafar (2019). An IoT based framework for energy monitoring
Intelligent Energy (IE) unveiled a new hydrogen fuel cell system that is smaller and more powerful than any other solution on the passenger car market. Intelligent Energy''s IE-DRIVE™ system has been designed to give passenger car manufacturers direct access to a smaller, more powerful, turnkey and commercially-viable hydrogen fuel cell...
Intelligent energy system We are building an energy platform where society''s expectations and cyberreality come together. Professor Peter Palensky, Intelligent Electrical Power Grids The foundations of the electricity grid are being overhauled completely, going from a few centrally organised coal-fired power stations to thousands of windmills
The essence of energy system transition is the "energy revolution". The development of the "resource-dominated" energy system with fossil energy as the mainstay has promoted human progress, but it has also triggered energy crisis and ecological environment crisis, which is not compatible with the new demands of the new round of scientific and
Indeed, this paper proposes an intelligent home energy management system (HEMS) to deal the above problems. The home energy management system assigns a dynamic priority to a household appliance based on the type of appliance and its current status. Considering the capacity of renewable energy, appliance consumption is scheduled according
Electricity is used as a form of energy in 3.6% of households. In the transport sector, a lot of petrol (46%) and diesel (35%) is used. In industry, there is an even distribution in the consumption of electricity (36%), diesel (37%) and fuel oil (27%). Togo energy sector indicators.
In total, electricity supply of 1.162 GWh is thus achieved through distribution losses, resulting in a final electricity consumption of 876 GWh. Togo's total energy consumption is divided into three sectors. The largest share, 76%, is in the use of biomass, followed by petroleum products 20%. Only 4% of energy is used in the form of electricity.
The electrification technologies and business model of Togo. The national Power grid, mini-grids for PPP and solar home systems (SHS) The national strategy is based on the most cost-effective approach for identify the technologies to be deployed on the territory.
Another important player in the energy sector is the Togolese Agency for Rural Electrification and Renewable Energies (AT2ER), a public institution, with financial autonomy. The agency is in charge of implementing the country's rural electrification policy, promoting and developing renewable energies.
Togo recognizes that access to electricity is an essential element of its economic development and inclusive growth policy and is one of the major pillars that will enable the implementation of its new National Development Plan. Togo's ambition is to ensure universal access for all Togolese by 2030, with a 100% access rate over the next ten years.
Energy supply Togo from production and import to consumption. The energy sectors are divided into biomass, petroleum products and electricity. (SIE, 2017) The available electrical energy in Togo in 2016 is 1.162 GWh of wich 744 GWh is imported. The remaining energy comes from domestic production.
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