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The Development Trend of Submarine Cable Projects for Achieving Optimal Allocation of Energy Using International Power Grid Interconnection

机译:利用国际电网互连实现潜艇电缆项目的发展趋势

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In the international and regional interconnection of the power grid, submarine cable transmission engineering is a critical component for network construction and optimizing energy allocation. This paper describes the condition of the regional power grid interconnection of submarine cable projects around the world since the 1990's and the development trends of cross ocean power grid connection projects in different countries. It summarizes and analyses the electricity transmission method applied in submarine cable projects. It provides references and insights to the research for electricity transmission method used in the cross ocean interconnecting projects and to the choice of transmission method adopted in the interconnecting projects. It points out advantages and shortcomings of the direct current transmission system applied in submarine cable projects and the strong point that VSC HVDC is used in the submarine cable projects. In the process of achieving grid internationalization, regional power grid interconnection and optimal energy allocation, submarine cable transmission engineering is an important component for network construction. In recent years, with the development of international power transmission technology, together with the trend of economic integration, optimal allocation of energy and reducing the impact on the environment, the cross-sea power transmission, manufacturing technology of the submarine cable and submarine cable engineering technology continues to make progress. The construction of submarine cable is constrained by geographical construction conditions, ocean engineering conditions and construction equipment. The construction involves a wide range of technology with a large investment scale and complex techniques. This construction would be separated into two stages. The preparation stage includes engineering design, submarine cable routing, cable manufacturing and transportation. The construction stage is composed of submarine cable routing orientation, submarine cable laying, on-land equipment installation, test and commissioning and quality control of the work. The main elements of the submarine cable transmission project construction includes regional power grid interconnection across the waters, power supply to oceanic islands and an oil drilling platform and transport marine renewable energy through grid-connected. Impacted from international energy resource optimal utilization, improving national energy safety and reliability from each country and realizing power exchange among different countries, the submarine cable construction can continue to push the international energy structure change, establishing global energy structure for a further development.
机译:在电网的国际和区域互连中,潜艇电缆传输工程是网络施工和优化能源分配的关键组成部分。本文介绍了自1990年代以来世界各地潜艇电缆项目区域电网互连的条件及不同国家跨越海洋电网连接项目的发展趋势。它总结和分析了潜艇电缆项目中应用的电力传输方法。它为交叉海洋互连项目中使用的电力传输方法以及选择互连项目采用的传输方法的选择提供了参考文献和见解。它指出了在潜艇电缆项目中应用的直流传输系统的优点和缺点,并且在潜艇电缆项目中使用VSC HVDC的强点。在实现电网国际化的过程中,区域电网互连和最优能量分配,潜艇电缆传输工程是网络建设的重要组成部分。近年来,随着国际电力传输技术的发展,与经济一体化的趋势,能源的最佳分配,减少对环境的影响,船舶电缆的跨海电力传输,潜艇电缆和潜艇电缆工程技术继续取得进展。潜艇电缆的建设受到地理施工条件,海洋工程条件和施工设备的约束。该结构涉及具有大型投资规模和复杂技术的广泛技术。这种结构将分为两个阶段。制备阶段包括工程设计,潜艇电缆路线,电缆制造和运输。施工阶段由潜艇电缆路由方向,潜艇电缆铺设,陆地设备安装,测试和调试和质量控制。潜艇电缆传输项目施工的主要元素包括跨海域的区域电网互连,电源到海洋岛屿和油钻平台,通过网格连接海洋可再生能源。影响来自国际能源资源的最佳利用,从各国的国家能源安全和可靠性,实现不同国家的电力交换,潜艇电缆建设可以继续推动国际能源结构的变化,建立进一步发展的全球能源结构。

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