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Study on the Key Problems of UHVAC/DC Power Grids with New Generation Large Synchronous Condenser

机译:新一代大型同步凝汽器UHVAC / DC电网关键问题研究

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In order to cope with the great pressure caused by the gradually exhaustion of fossil energy and environmental protection and climate warming, the development and application of the renewable energy has become an important foundation and development direction in the field of energy. However, due to the impact of energy and resource endowment, China’s load center and renewable energy base into the characteristics of long-range reverse distribution, the use of long-distance large-capacity transmission potential is necessary. With the “strong DC system and weak AC system” problem of the company power grid is increasingly prominent, the higher demand of dynamic reactive power support is put forward in the UHV DC power transmission project. Then, the large-capacity dynamic reactive power of new generation synchronous condenser is large-scale built up in the UHV DC/AC power system. Due to the high requirement of response speed and capacity in the UHV DC power transmission, the structure, dynamic characteristics, excitation control and relay protection and other aspects of the large synchronous condenser are different from generators and traditional synchronous condenser. Based on this, the dynamic reactive power demand of UHV DC power system is analyzed in this paper. Then, the main situation of large synchronous condenser is considered. In addition, the key points of the excitation control system and protection system are also discussed in this paper. There are important theoretical and practical significance for the safe and reliable operation of the UHV DC/AC power system.
机译:为了应对化石能源逐渐枯竭,环境保护和气候变暖带来的巨大压力,可再生能源的开发和应用已成为能源领域的重要基础和发展方向。但是,由于受到能源和资源end赋的影响,中国的负荷中心和可再生能源基地化成为远程反向分布的特征,因此有必要利用远程大容量输电潜力。随着公司电网“强直流系统,弱交流系统”问题日益突出,特高压直流输电项目提出了对动态无功支持的更高要求。然后,在UHV DC / AC电力系统中大规模建立了新一代同步电容器的大容量动态无功功率。由于特高压直流输电对响应速度和容量的要求很高,因此大型同步电容器的结构,动态特性,励磁控制和继电保护等方面与发电机和传统同步电容器不同。在此基础上,分析了特高压直流电源系统的动态无功需求。然后,考虑了大型同步电容器的主要情况。此外,本文还讨论了励磁控制系统和保护系统的要点。特高压直流/交流电源系统的安全可靠运行具有重要的理论和实践意义。

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