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Interconnectors are used to increase the security of the energy supply and to manage peak demand. They enable cross-border access to the producers and consumers of electricity, thus increasing the competition in energy markets. They also help integrate more electricity generated from renewable
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Interconnectors may run across a land border or connect two land areas separated by water. As of July 2022 there are at least 35 international connectors and many more intra-national connectors, see
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for energy, which makes interconnectors viable. They are essential to achieve security of supply. As such, the Nordic and Baltic energy exchange
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Many of these HVDC lines transfer power from renewable sources such as hydro and wind. For names, see also the
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emissions. Interconnectors aid adaptation to changing demand patterns such as the uptake of electric vehicles.
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rely on multiple interconnectors. The fullest possible implementation of this is the proposed
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in the USA) is a structure which enables high voltage DC electricity to flow between
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GB/France : un projet d’interconnexion dans les tuyaux... de la justice
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which would include numerous interconnectors between national networks.
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power. The longest proposed connector is the 3,800 km, 3.6 GW
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The longest interconnection as of July 2022 was the 2,210 km
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http://ec.europa.eu/energy/gas_electricity/internal_market_en.htm
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sources, thus reducing the use of fossil fuel power plants and CO
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of electricity between territories. For example, the
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List of high-voltage direct-current (HVDC) projects
399:"CONNECTING THE GRID: DC TIES SERVE CRITICAL ROLE"
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437:LARGE-SCALE ELECTRICITY INTERCONNECTION
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