System and technology comparison of UHV transmission concepts

D. Imamović, T. Kern, M. Muhr
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引用次数: 5

Abstract

As the historical development shows, both AC and DC transmission voltages have steadily increased. The growing demand for power supply induced the building of large power plants located far away from load centres. Also future projects in Europe such as DESERTEC or large offshore Wind Power Systems demand a smart solution of transmitting electric bulk power in an economic and efficient way over long distances. In order to reach this goal, very high voltages for transmission are necessary. AC-Voltages ≥1000 kV und DC-Voltages ≥±800 kV are defined as Ultra- High-Voltages (UHV). Based on the assumption of a continuous growth of energy demand, experts considered the invention of UHV transmission level in North America and Europe already 40 years ago [1]. However - it took almost 4 decades till the first UHV AC line reached operational status in China. This paper demonstrates possible ways of transmitting large bulk power generated in offshore wind parks over a distance of roughly 600 km (about 380 miles) across Germany. It contains and discusses the results of the investigation for all relevant characteristics, fragmented into general, mechanical, electrical and ecological parameters. After a detailed look on the mechanical construction of UHV overhead transmission lines it could be stated, that this was one of the limiting factors. Also the maximum power, which could be injected into one grid point is a critical value and has influenced the reliability analyses.
特高压输电概念的系统与技术比较
历史发展表明,交流和直流输电电压都在稳步上升。对电力供应日益增长的需求促使人们在远离负荷中心的地方建造大型发电厂。此外,欧洲未来的项目,如DESERTEC或大型海上风力发电系统,需要一种智能的解决方案,以经济有效的方式远距离传输大量电力。为了达到这一目标,需要非常高的传输电压。交流电压≥1000kv和直流电压≥±800kv为特高压。基于对能源需求持续增长的假设,专家们认为北美和欧洲的特高压输电水平的发明早在40年前就已经达到了[1]。然而,中国的第一条特高压交流线路花了近40年的时间才达到运行状态。这篇论文展示了将海上风电场产生的大量电力传输到德国境内约600公里(约380英里)的可能方法。它包含并讨论了所有相关特征的调查结果,分为一般,机械,电气和生态参数。在详细研究了特高压架空输电线路的机械结构后,可以说,这是限制因素之一。另外,一个电网点可注入的最大功率是一个临界值,影响了可靠性分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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