超级电网的技术限制——欧洲的展望

D. Van Hertem, M. Ghandhari, M. Delimar
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引用次数: 97

摘要

为了寻求更可持续的能源供应,可再生能源越来越多地被引入电力系统。然而,这些电源大多远离负荷中心,现有的电力系统正在过载。超级电网被许多人视为一种可行的解决方案,可以将这些可再生能源大规模整合到欧洲电力系统中。通过连接彼此相距很远的能源,并提供增强的控制,可以提供平衡服务。地理上的分布反过来又使能源组合更加多样化。同时也增加了供给的安全性。虽然超级电网得到了很多关注,但它还不能建成。虽然基本技术似乎是可用的,但仍然存在一些技术限制。本文首先描述了超级电网的潜力和需求。本文的重点是一个网状的,多终端VSC高压直流输电,并解释了为什么这种相对较新的技术被认为是最适合这种电网的技术。接下来,讨论仍然存在的各种困难或挑战。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Technical limitations towards a SuperGrid — A European prospective
In the search for a more sustainable energy supply, renewable energy sources are increasingly introduced into the power system. However, most of these sources are located far from the load centers, and the existing power system is getting overloaded. A supergrid is by many seen as a viable solution that allows a massive integration of these renewable energy sources into the European power system. By connecting energy sources that are located far from each other and by offering enhanced control, balancing services can be delivered. The geographic spread in its turn allows a more diversified energy portfolio. In the meanwhile it increases the security of supply. Although the supergrid has gotten much attention, it cannot be built yet. While the basic technology might seem available, several technical limitations still exist. This paper first describes the potential and need for a supergrid. The paper focuses on a meshed, multi-terminal VSC HVDC, and it is explained why this relatively new technology is believed to be the best suitable one for such a grid. Next the different difficulties or challenges that still exist are addressed.
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