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EU transition in power sector How RES affects the design and operations of transmission power systems

机译:欧盟电力行业转型RES如何影响输电系统的设计和运行

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In the past, much of Europe's electricity grid network has been designed in consideration of the locations of conventional generation plants. However, a large share of today's renewables production - notably variable wind and solar - does not correspond to this grid architecture. Interconnectors, in addition to internal infrastructure, are key to creating new electricity corridors to connect areas of surplus to areas of scarcity. In this context, in 2014 the European Council, in recognizing that a fundamental role of transmission infrastructure is to enable the integration of areas of high renewable energy potential with main consumption areas, endorsed the proposal by the European Commission to extend the current 10% electricity interconnection target to 15%. In this way, more available interconnection capacity would enable the grid to accommodate such increasing levels of variable renewable generation in a secure and cost-effective way.The previously described changes in interconnected system operating conditions, resulting in potential occurrences of unforeseen serious disturbances - most notably the well-known system split observed in the continental synchronous area on 04 November 2006 - have led to create the first Regional Security Coordination Initiatives (RSCIs now RSCs) and establishment of Coreso and TSC back in 2008. These entities have allowed TSOs to further coordinate not only system operations but also network planning, system adequacy analysis, market setups, etc.However, given the challenges faced by the electricity industry in Europe, one may wonder whether the pace of developments in regulation and market design, system operations and system planning can keep up with the pace of change in the electricity system. In response to this concern, the present paper focuses on a central question: how the electricity system that is today primarily organized in a centralized, top-down manner will be reshuffled in the future?The structure of the paper is as follow. The authors begin by describing the changes that are occurring in the power system and market sector, together with their drivers and underpinning regulation. Then the paper presents the challenges in the Eu-wide planning process, starting from TYNDP and PCI and then proceeding also to technical aspects of cost-benefit analysis and interconnection targets.
机译:过去,欧洲的大部分电网都是在考虑常规发电厂的位置的情况下设计的。但是,当今可再生能源生产中的很大一部分-特别是可变风能和太阳能-与这种电网架构不符。除内部基础设施外,互连器对于创建新的电力走廊以将过剩地区与稀缺地区连接起来至关重要。在此背景下,2014年,欧洲理事会认识到传输基础设施的基本作用是使具有高可再生能源潜力的地区与主要消费地区整合,因此批准了欧盟委员会关于将目前的10%的电力扩大使用的提案互连目标为15%。这样,更多的可用互连容量将使电网能够以安全且经济高效的方式适应不断增长的可变可再生能源发电量。先前描述的互连系统运行条件的变化,导致发生不可预见的严重干扰-大多数值得注意的是,2006年11月4日在大陆同步区观察到的众所周知的系统分裂-导致创建了第一个区域安全协调计划(RSCI,现在称为RSC),并在2008年成立了Coreso和TSC。这些实体使TSO得以进一步发展不仅可以协调系统运行,还可以协调网络规划,系统充足性分析,市场设置等。然而,鉴于欧洲电力行业面临的挑战,人们可能会怀疑监管和市场设计,系统运行和系统的发展速度是否规划可以跟上电力系统变化的步伐。针对这种担忧,本文重点关注一个中心问题:今天将主要以集中,自上而下的方式组织的电力系统在未来将如何改组?本文的结构如下。作者首先描述了电力系统和市场领域中正在发生的变化,以及它们的驱动因素和基础法规。然后,本文介绍了欧盟范围内规划过程中的挑战,从TYNDP和PCI开始,然后再进行成本效益分析和互连目标的技术方面。

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