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Nonconventional reliable AC transmission systems for power delivery at long and very long distance

机译:非常规可靠的交流输电系统,用于长距离和超长距离的电力输送

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All over the world there are large and very economical hydroelectric resources, which are located at long (500-1500 km) and very long (2000-4000 km) distance from load areas. To secure required level of reliability, transmission systems for power delivery from hydroelectric stations must meet the criterion (n-1), i.e. transmitted power doesn't have to decrease in case of emergency opening of any circuit sections. Application of double or triple-circuit interlinked transmission systems is traditional decision for realizability of this criterion. But frequently reliability condition does not allow implementation of the most economical variant, for example to make use of 1150 kV single-circuit transmission system instead of 750 kV triple-circuit one. It is considered in the capacity of feasible variants for solution of the reliability problem as follows: triple-circuit interlinked transmission systems; single-circuit transmission systems with spare phase; single-circuit four-phase transmission systems; and single-circuit transmission systems with realization of two-phase long-duration conditions. The following aspects are discussed and analyzed: general review of variants for long and very long distance transmission; their scheme and conditions; comparison of their reliability and techno-economical characteristics.
机译:世界各地都有大量非常经济的水力资源,这些资源位于距负荷区很远(500-1500公里)和很长(2000-4000公里)的地方。为了确保所需的可靠性,用于从水力发电站进行供电的传输系统必须满足标准(n-1),即,在紧急断开任何电路部分的情况下,不必降低传输功率。双回路或三回路互连传输系统的应用是实现该标准的传统决定。但是频繁的可靠性条件不允许实施最经济的变体,例如使用1150 kV单回路输电系统代替750 kV三回路输电系统。为了解决可靠性问题,以可行的变体形式考虑如下:三回路互连传输系统;备用相的单回路输电系统;单回路四相传输系统;实现了两相长时间状态的单回路输电系统。讨论和分析了以下方面:长距离和超长距离传输的变体的一般回顾;他们的计划和条件;比较其可靠性和技术经济特性。

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