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Artelys Participates in the European HyNet Project to Optimize Hybrid AC/DC Power Grids
As part of the Horizon Europe program, Artelys is participating in the HyNet project. This initiative aims to study and optimize the operation of hybrid AC/DC power grids in the context of the rapid growth of power electronics-based technologies and the widespread deployment of distributed energy resources.
Powering Progress: Artelys Algorithms Enable REN’s Integration into the MARI Platform
— Artelys provided the advanced algorithms powering REN’s end-to-end mFRR processes, enabling seamless integration into the MARI platform whose market algorithms are also developed by Artelys.
EEX launches auctions for French Biogas Guarantees of Origin
— The European Energy Exchange (EEX), in collaboration with the French Ministry of Energy, is introducing auctions for biogas Guarantees of Origin (GOs). Artelys provides the market-clearing technology to optimize the auction process, supporting renewable energy certification and decarbonization efforts.
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— Relying on their high level of expertise in quantitative methods, our consultants deliver efficient solutions to complex business problems that best meet the needs of our clients.
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Numerical components that give you a head start
— Whether it is to model the complex problems that our customers are submitting to us or to provide the Artelys Crystal suite with the most powerful optimization engine, we rely on the most advanced mathematical programming tools in their respective fields.
Numerical components that give you a head start
— Whether it is to model the complex problems that our customers are submitting to us or to provide the Artelys Crystal suite with the most powerful optimization engine, we rely on the most advanced mathematical programming tools in their respective fields.
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— Discover the results of the technico-economic studies carried out on behalf of our customers using the modeling platform Artelys Crystal.
Assessing hydrogen infrastructure needs in a scenario without hydrogen imports and EU production
In a context of renewed interest in hydrogen as a means of decarbonising hard-to-abate carbon intensive economic sectors, the European Commission announced the objective of 40 GW electrolyser capacity by 2030 producing up to 5 Mt of renewable hydrogen in its Communication “A hydrogen strategy for a climate-neutral Europe” (2020). Following the Russian invasion into Ukraine, the European Commission’s REPowerEU plan (2022) further envisages an accelerated uptake of hydrogen, notably in transport and industry sectors, in order to aim for a phase-out of natural gas imports from Russia by 2027, increasing the hydrogen production target to 10 Mt, as well as 10 Mt hydrogen imports, of which 4 Mt will take the form of derivatives. The present study aims at assessing the needs for pan-European hydrogen infrastructure in the beginning of the 2030s, adopting the REPowerEU scenario as main framework of the modelling assumptions. To assess hydrogen infrastructure needs, a multi-energy modelling environment has been designed in the METIS model, reflecting the operation and coupling of electricity, gas and hydrogen systems with an hourly time resolution over an entire year (2030). The capacities of hydrogen storage, production, and cross-border transmission assets have been optimized thanks to the advanced algorithms of the Artelys Crystal Super Grid platform.
Study on the allocation of costs and benefits for offshore infrastructure in EU sea basins
To support the European Commission, and notably its Grid Action Plan, this study proposes methodologies for Cost-Benefit Analysis and Cross-Border Cost Sharing options for offshore electricity infrastructure projects. The massive investments that are foreseen in offshore generation and grid infrastructure will create huge benefits for Europe. A fair allocation of costs and benefits across Member States can be a key enabler of such projects. Who should pay for the offshore electricity infrastructure? How does this depend on the way the benefits are shared? This study aims to provide some answers.
24/7 renewable energy supply for electric mobility in the City of Paris
The City of Paris has ambitious objectives on renewable electricity supply, and they already have 100% renewable supply for municipal demand. However, current certification mechanisms (guarantees of origin) do not account for real time matching between demand and renewable production, which is variable and not necessarily available at all times.
To address the limits of this approach, initiatives such as the 24/7 Carbon-Free Energy (CFE) have been launched, with the objective of ensuring that every consumed kilowatt-hour is produced by carbon-free sources at each hour of the year. Within this context, Artelys and EY performed a study for the City of Paris and C40 to assess the potential of matching renewable generation and e-mobility demand at each hour of the year, with a focus on the role of mobility charging flexibility.
Benefit analysis of electricity interconnections between France and the United Kingdom
The aim of this study is to provide a quantitative and qualitative analysis informing decision-making on the development of new electricity interconnections between France and Great Britain. The economic benefits associated with a new interconnection project are estimated via the increase in social welfare brought about by the commissioning of this new interconnection. The expected gains in terms of security of supply are also assessed. These benefits are evaluated for the years 2030, 2040 and 2050. The future evolution of the power generation and capacity mix, energy demand and infrastructure cannot be known with certainty. Several scenarios and variants are therefore studied (including different assumptions about renewable energy deployment, nuclear capacity, interconnection levels, etc.) in order to identify the opportunities and risks associated with an increase in electricity interconnection capacity between France and Great Britain.
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