Flexible Systems for the Transmission of Electrical Energy Over Long Distances

G. I. Davydov, P. Vasilyev
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引用次数: 1

Abstract

Object: Transport of electrical energy over long distances based on flexible power transmission systems using a thyristor voltage regulator. Methods: Transportation of electric power of an alternating current to ultra-long distances is possible by compensating or half-wave (tuned to half-wave) power transmission. Findings: In order to transmit electric power with alternating current to long-distance and ultra-long distances, half-wave power transmission should be preferred, since they do not require additional costs for reactive power compensation and, at the same time, have increased capacity. However, the advisability of tuning to a half-wave occurs when the line length is 1500 km or more. The line, which is less than 1500 km long, should be brought to the line of “zero length”. The reactance of the line, the length of which is less than the boundary length, that is, less than 1500 km, is proposed to be compensated and lead to a “zero” length line to increase throughput and stabilize the voltage regime along the line with the help of a thyristor parameter stabilizer developed at the Institute of Physical and Technical Problems of the North them. V.P. Larionov. Conclusions: A trunk line is proposed in the north, providing the centralized electricity supply to the new industrial centers of the northern and arctic regions of the Republic of Sakha (Yakutia). A new method for constructing extended power transmission in an understated voltage class based on high-current electronics was developed.
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远距离电能传输的柔性系统
目的:利用可控硅电压调节器实现基于柔性电力传输系统的长距离电能传输。方法:通过补偿或半波(调谐到半波)电力传输将交流电传输到超远距离是可能的。研究结果:为了将交流电传输到远距离和超远距离,半波电能传输应该是首选,因为它们不需要额外的无功补偿成本,同时又增加了容量。然而,当线路长度为1500公里或更长时,调谐到半波是可取的。这条线路长度不足1500公里,应达到“零长度”。该线路的电抗小于边界长度,即小于1500公里,建议在北方物理和技术问题研究所开发的晶闸管参数稳定器的帮助下,对其进行补偿并导致“零”长度线路,以增加吞吐量并稳定沿线的电压状态。副总裁Larionov。结论:建议在北部修建一条干线,为萨哈共和国(雅库特)北部和北极地区的新工业中心提供集中电力供应。提出了一种基于大电流电子学的低电压级扩展输电新方法。
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