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ElecLink

ElecLink is a 1,000 MW (HVDC) electrical interconnector linking the national grids of the and via the . It consists of two 51 km cables routed through the existing infrastructure, connecting converter stations in , , , and Peuplingues, near , . Operational since May 2022, with interruptions in 2024–2025 due to technical cable issues but resumed by mid-2025, ElecLink facilitates bidirectional flows equivalent to powering approximately 2 million households and increases cross-Channel transmission capacity by 50%. Developed as the world's first HVDC installed in a live , ElecLink was constructed using the Channel 's underutilized to minimize environmental disruption. The project, fully privately funded by Group through its subsidiary ElecLink Limited, received joint support from the and governments in February 2012 and was identified as a key initiative in the UK's National Infrastructure Plan later that year. Construction, led by contractors including Prysmian for the cables and for civil works, was completed in October 2021, with safety approvals granted in February 2022. ElecLink was certified as a (TSO) in February 2019 and had been granted a 25-year regulatory exemption in 2014. The plays a vital role in enhancing by balancing supply and demand between the and , optimizing the integration of intermittent renewable sources like and , and fostering competition in wholesale markets. By leveraging the —opened in 1994 with a concession extending to 2086—ElecLink supports the broader without requiring new , thereby reducing construction timelines and ecological impacts. As of 2025, ElecLink operates, contributing to grid stability amid growing electrification demands across .

Overview

Project description

ElecLink is a 1,000 MW (HVDC) that links the grids of the and . It enables bidirectional transfer, allowing to flow in either direction to balance across borders. The project enhances by providing additional capacity to import or export during peak periods or shortages, supports the integration of sources into the grid, and can supply enough to approximately 2 million typical households annually. As the first interconnector to utilize the infrastructure since its opening in 1994, spans a total length of 51 km, with the majority routed through the existing tunnel. This innovative use of pre-existing infrastructure connects converter stations at Cheriton near in , , and Peuplingues near , , facilitating efficient cross-border exchange without new subsea . Owned and operated by , the interconnector strengthens the overall European power market integration. Commercial operations for ElecLink commenced on 25 May 2022, marking the start of regular power flows between the .

Technical specifications

ElecLink employs a (HVDC) system in a symmetrical configuration operating at ±320 voltage, enabling efficient bidirectional power flow across the . This design utilizes converter (VSC) technology at both ends, which supports advanced services such as black-start capability, allowing the system to restart the power in the event of a without external power sources. The converters are rated at 1,000 MVA each, matching the interconnector's overall power capacity of 1,000 MW, sufficient to supply electricity equivalent to the needs of approximately 2 million households. The cable system consists of 51 km of HVDC cables routed entirely through the Channel Tunnel's north running tunnel, with no submarine or overhead sections, using (XLPE) insulation for reliable performance in the confined tunnel environment. These cables, supplied and installed by , are manufactured in 2.5 km lengths for ease of handling and feature enhanced outer layers to meet stringent standards under EU 1303/2014. The converter stations are situated at Cheriton near in the UK and Peuplingues in , connecting via short underground AC cables—14.5 km to the Sellindge 400 kV substation in the UK and 3.5 km to the Les Mandarins 400 kV substation in —to integrate seamlessly with the respective national grids. The HVDC design ensures high , with end-to-end transmission losses of 2.9%, primarily due to the low-resistance DC transmission and VSC optimization, minimizing over the 51 route. This supports stable cross-border exchange while incorporating fast-acting protection systems and redundant controls to handle faults, limiting release in the event of a failure to a maximum of 163 kJ.

Route and infrastructure

UK connection

The UK connection for ElecLink terminates at the Sellindge substation in , where it integrates with National Grid Electricity Transmission's 400 kV (AC) network. This substation serves as the grid entry point, enabling the bidirectional flow of up to 1,000 MW of electricity to support the UK's energy system. From the converter station near the exit, the infrastructure includes approximately 14.5 km of underground AC cables routed to the Sellindge substation, incorporating high-voltage equipment such as for reliable power transfer. In May 2025, a precautionary occurred due to a slight cable misalignment on the UK side, resolved by early June without affecting operations. The design employs converter (VSC) technology in a symmetrical configuration at ±320 kV, providing inherent through rapid power flow control and minimal disruption during grid faults. The Sellindge location benefits from its proximity to the existing Interconnexion France-Angleterre (IFA) interconnector, which also connects at the same substation, allowing for clustered grid reinforcements in southeast England to optimize transmission capacity without extensive new infrastructure. Environmental considerations on the UK side emphasize minimal land use and visual impact, achieved through underground cabling buried along the route to protect the landscape, with no overhead lines required and a small converter station footprint. This approach results in low noise levels, negligible electromagnetic fields, and negligible disturbance to local ecosystems, aligning with the project's overall low-carbon objectives.

Channel Tunnel integration

ElecLink crosses the Channel through the north running rail tunnel of the existing infrastructure, spanning approximately 51 km and utilizing unused space along the tunnel walls to accommodate the two (HVDC) cables with a combined capacity of 1,000 MW without interfering with operations. The cables are installed along one side of the tunnel, secured via a hexagonal comprising 10,000 galvanized steel brackets and 40,000 bolts, which facilitated the pulling of the cables from January to May 2021 during coordinated maintenance windows. To manage operational heat from the cables, ElecLink incorporates enhanced systems integrated with the tunnel's existing and cooling , which maintains ambient temperatures below 25°C through four 10 MW chillers distributed at the tunnel's ends. These adaptations ensure efficient heat dissipation while preserving the tunnel's primary rail function, with cable temperatures continuously tracked to prevent any impact on shuttle services. Safety features are paramount, with the HVDC cables designed using low-smoke zero-halogen (LSOH) materials and flame-retardant oversheaths to minimize fire spread risks, fully compliant with standards set by the Channel Tunnel Safety Authority (CTSA). The system includes independent emergency shutdown mechanisms for the interconnector, allowing rapid isolation of power flow without affecting tunnel-wide operations, as verified through rigorous risk assessments approved by the Intergovernmental Commission (IGC) in 2022. Installation was closely coordinated with Eurotunnel to minimize disruptions, with cable pulling executed during non-peak periods and under strict safety protocols, ensuring no interruptions to freight or passenger services throughout the process.

French connection

The French endpoint of ElecLink features a (HVDC) converter located in Peuplingues, situated approximately 3 km from the Channel Tunnel's French portal at Coquelles near Sangatte. From this , a 3.5 km underground (AC) connects to the Les Mandarins substation in Bonningues-lès-Calais, enabling seamless integration with (RTE)'s 400 kV AC transmission . This onshore infrastructure employs fully underground routing for the AC cable to minimize visual and landscape disruption in the coastal region, aligning with French regulatory requirements under the Code de l'environnement for environmental impact assessments and preservation. Specific coastal protection measures included restricted excavation depths and controls during installation to safeguard nearby dunes and marine-adjacent ecosystems, as mandated by local prefectural authorizations.

Ownership and financing

Ownership structure

ElecLink is wholly owned by SE, a French-listed company formerly known as Groupe Eurotunnel, following its acquisition of the remaining 51% stake from STAR Capital Partners in August 2016. Prior to this transaction, held a 49% interest in the project since its inception as a in 2011. This full ownership structure integrates ElecLink directly into Getlink's portfolio, alongside its core operations, enabling coordinated management of infrastructure and energy assets. The project is governed as a certified Transmission System Operator (TSO) in compliance with the European Union's Third Energy Package, specifically Directive 2009/72/EC and Regulation (EC) 714/2009, which mandate unbundling and certification to ensure independent operation of transmission networks. Certification was granted by in the UK and the Commission de Régulation de l'Énergie (CRE) in , affirming ElecLink's adherence to these standards for cross-border electricity flows. Oversight is provided by Getlink's , which ensures strategic alignment while maintaining the TSO's operational independence as required by EU regulations. ElecLink stands out as the first UK electricity interconnector to be entirely financed through private investment, without government subsidies or consumer underwriting, operating under a regulatory exemption regime pursuant to Article 17 of Regulation (EC) 714/2009. This exemption, jointly approved by and CRE in April 2014 and later extended, relieves ElecLink from certain third-party access and tariff regulation obligations, allowing it to retain congestion revenues while committing to long-term capacity auctions for market integration. The structure promotes innovation in interconnector development by leveraging private capital for infrastructure that enhances between the and . Operationally, ElecLink is managed through its dedicated subsidiary, ElecLink Limited, a UK-registered entity that holds the electricity interconnector licence granted by Ofgem on 19 November 2013. This licence authorizes the construction, ownership, and operation of the 1 GW high-voltage direct current (HVDC) link, subject to compliance with UK energy market rules. As a wholly owned arm of Getlink, ElecLink Limited reports directly to the parent company, facilitating efficient decision-making and resource allocation across the group's European energy initiatives.

Funding and exemptions

The development of ElecLink was financed through a total investment of approximately €580 million, entirely funded by sources without reliance on public subsidies. Although primarily privately financed, ElecLink received €2.2 million in EU Connecting Europe Facility (CEF) grants for . This funding covered construction costs, including (EPC) works, grid connections, insurances, IT systems, and contingencies. The project was initially backed by a between Groupe Eurotunnel SE (now ) and Star Capital Partners, with Getlink acquiring full ownership in 2016. ElecLink operates as a merchant interconnector, retaining revenues from capacity auctions due to its regulatory exemptions, without a cap-and-floor regime. These exemptions, approved by and CRE under Article 17 of Regulation (EC) No 714/2009 and extended for 25 years in February 2019, address the infrastructure's specific constraints, such as limited space and the need for coordinated operations with services, while ensuring no to competition. The exemptions apply for a limited period, allowing ElecLink to retain revenues from capacity auctions without mandatory sharing. The interconnector licence, granted by on 19 November 2013, enables operations aligned with the 25-year regulatory exemption from February 2019 and the Channel Tunnel concession until 2086, facilitating long-term capacity allocation through auctions. As of September 2025, these auctions had secured revenues of approximately €217 million for the year, representing 97% of capacity and reflecting strong market demand for cross-Channel electricity flows despite normalization from peak levels.

Development and construction

Project initiation and approvals

The ElecLink project originated in May 2011 with the establishment of a company, ElecLink Limited, between STAR Capital Partners (51% stake) and Groupe Eurotunnel (49% stake), specifically to develop and operate a 1,000 MW (HVDC) linking the electricity grids of and via the Channel Tunnel. This initiative aimed to enhance cross-border energy trading capacity, leveraging the existing tunnel infrastructure to minimize environmental impact and construction costs. Key early milestones included ElecLink seeking exemptions under Article 17 of EU Regulation (EC) No 714/2009; the endorsed the regulators' preliminary positive opinion on July 28, , leading to a final joint exemption decision by and CRE on September 16, , which partially waived unbundling rules to permit Groupe Eurotunnel's continued involvement despite its broader interests, subject to and safeguards. These regulatory endorsements were pivotal in securing financial viability and progressing development. Regulatory approvals advanced with granting ElecLink an electricity on November 19, 2013, authorizing the construction, ownership, and operation of the link under standard conditions. On April 14, 2016, approved the access rules and charging methodology. CRE provided corresponding French authorization on April 7, 2016, approving the access rules to ensure non-discriminatory capacity allocation and compliance with EU market rules. A significant ownership shift occurred later that year when, on August 23, 2016, Groupe Eurotunnel acquired STAR Capital's 51% stake for €75 million, achieving 100% ownership and injecting momentum to overcome prior delays in financing and permitting, thereby fast-tracking construction preparations. The project reached a critical pre-construction threshold in February 2022, when the Channel Tunnel's Intergovernmental Commission (IGC) approved ElecLink's safety management system on February 17, confirming compatibility with tunnel operations and enabling the commissioning phase under the oversight of national safety authorities. This approval addressed unique challenges of integrating the within the shared infrastructure, ensuring adherence to bilateral safety protocols established by the 1986 Treaty of .

Construction timeline

The construction of ElecLink began with the award of the contract for (HVDC) cable manufacturing and supply to in November 2016. This phase involved the production of two 51 km submarine cables and associated onshore cables, designed to operate at 320 kV and enable bidirectional power flow of up to 1 GW. , in consortium with , handled the design, manufacturing, and initial supply logistics, marking a key step in preparing the materials for installation. Groundbreaking occurred in February 2017, initiating site preparation and works at the converter stations in , , and Peuplingues, . led the UK-side civil works, including the construction of the converter station and onshore cable routes, while Réseau de Transport d'Électricité (RTE) oversaw the French-side infrastructure, encompassing the Peuplingues station and grid connections. Simultaneously, commenced building the HVDC converter stations in 2017, with construction spanning 2017 to 2021 to equip the facilities with converter technology for efficient AC-DC conversion. Onshore works, including cabling and station foundations, progressed through 2017–2020, achieving substantial completion by late 2020 despite logistical complexities. The tunnel cable installation phase faced significant hurdles, originally targeted for 2018–2020 but postponed due to safety reviews and the , which disrupted supply chains and approvals. Following reinstatement of Inter-Governmental Commission (IGC) approval in December 2020, the 50 km cable pull through the Channel Tunnel's service tunnel occurred from January to May 2021, utilizing a specialized system and works train developed by and Prysmian. This installation connected the cables between the and French portals, integrating with the existing tunnel infrastructure without interrupting rail operations. Electrical testing of the cables followed from August to October 2021, verifying integrity and performance up to 1,000 MW. Converter station builds continued in parallel, with structural and electrical fit-outs completed by mid-2021, enabling initial power tests in October 2021. The delays shifted the overall project completion from an initial 2020 target to October 2021, when construction works fully concluded, paving the way for commissioning. This timeline reflected coordinated efforts among contractors to navigate regulatory, environmental, and challenges while adhering to stringent safety standards for the unique environment.

Commissioning and operational challenges

The commissioning phase of ElecLink culminated in the final approval from the Intergovernmental Commission (IGC) on 17 February 2022, which permitted the initiation of electricity transfer tests between the and . Prior to this, construction works had been completed in October , including power transfer tests that successfully reached the interconnector's full capacity of 1,000 MW between RTE in and National Grid in the . These tests, conducted from late into early 2022, verified the system's technical integrity and compatibility with the Tunnel's operations. Following the IGC approval, final technical testing with RTE and National Grid occurred from to May 2022, alongside preparations for IT systems and commercial auctions. Commercial operations launched on 20 May 2022 with the first auctions, enabling the to enter full service. The first commercial power flows occurred on 25 May 2022, marking the official start of bidirectional at up to 1,000 MW between the two countries. This phase confirmed ElecLink's role in enhancing cross-border , with initial operations demonstrating high reliability in the subsequent months. Operational challenges emerged in late 2024, escalating into early 2025 when a structural defect was identified in the support structure outside the in , leading to a suspension of activities from September 2024 that extended into January 2025. The fault, involving deterioration of the supporting , necessitated immediate inspections and repairs. This interruption highlighted vulnerabilities in the land-based s, requiring specialized work such as and re-jointing. A secondary short suspension occurred in May 2025 due to a minor misalignment detected during enhanced monitoring, lasting until 2 June 2025. Recovery efforts focused on comprehensive repairs and assessments, with gradual resumption of operations starting on 5 February 2025 after completion of restoration works and initial testing. Full technical assessments were finalized by mid-2025, allowing ElecLink to restore near-normal capacity. By 30 June 2025, 92% of the interconnector's capacity for the year had been auctioned, securing €205 million in revenue and demonstrating confidence in its post-repair . In the third quarter of 2025, ElecLink reported revenue of €66 million, down 13% from the prior year due to normalized markets, with operations continuing reliably thereafter. The suspensions resulted in an estimated €46 million in lost revenue, primarily from the extended outage in early 2025.

Operations and impact

Current operations

ElecLink's operations are coordinated through the Joint Allocation Office (JAO), which manages explicit capacity auctions to allocate cross-border transmission rights between the and . This auction-based system ensures efficient for electricity traders, with capacity rights sold on a yearly, monthly, and intraday basis to optimize flows. The interconnector supports bidirectional electricity transmission, enabling the to import power from 's stable generation during periods of high demand and export surplus , such as , to the French grid when production exceeds domestic needs. As of September 2025, ElecLink has achieved high , with 97% of its 2025 capacity pre-sold, securing nearly €217 million in revenue despite temporary suspensions earlier in the year. The 1,000 MW link operates at full commercial capacity, serving the equivalent of approximately 2 million households and demonstrating robust market demand for cross-Channel energy exchange. Real-time monitoring systems maintain grid synchronization between the and networks, using advanced control infrastructure to detect and respond to fluctuations in power flows. ElecLink employs converter (VSC) HVDC technology, which provides inherent capabilities for frequency support services, including reactive power compensation and fast response to grid disturbances, enhancing overall system stability. By bolstering the - trade corridor, ElecLink contributes to the broader goal of achieving at least 15% capacity relative to installed by 2030, promoting regional and integration.

Energy and economic benefits

ElecLink significantly enhances and efficiency by increasing the bidirectional exchange capacity between and by approximately 33%, from 3 to 4 , contributing to the UK's overall capacity with of approximately 9.8 as of 2025. This expansion allows the UK to stable baseload from 's nuclear-dominated mix, helping to balance the intermittency of UK renewables such as and , while reducing wind curtailment and enabling better utilization of excess renewable output across borders. Overall, these improvements contribute to lower production costs and enhanced system reliability in Northwest by facilitating cross-border flows during periods of supply-demand imbalance. Economically, ElecLink promotes market efficiency by integrating the and wholesale electricity markets, which reduces price volatility through greater price convergence and , particularly as renewable increases price differentials. The project's €580 million private investment has stimulated local economies in and by creating around 300 jobs during construction and supporting approximately 40 permanent positions for ongoing operations and maintenance. In terms of broader impacts, independent analysis estimates that ElecLink generates €600 million in net social welfare benefits over its lifetime, including gains for consumers from lower effective energy costs and improved , though consumers may experience minor surplus reductions offset by producer gains. Strategically, ElecLink bolsters the internal energy market by enhancing cross-border infrastructure and supporting decarbonization goals, with projected CO₂ emissions reductions of 6.1 million tonnes by 2030 through optimized renewable integration. Post-Brexit, it serves as a vital enabler for continued tariff-free electricity trade between the and , maintaining security of supply and market access despite the UK's departure from the market in 2021.

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