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Study on promoting integration of large scale wind employed the 750kV controllable shunt reactor

机译:750kV可控并联电抗器促进大规模风电一体化的研究

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By the end of 2010, the 750kV double circuit power transmission project from Dunhuang to Wusheng in Gansu had been put into operation, aimed at promoting the integration of large scale wind power, and solving the technology and practical problems caused by the intensively exploitation and long-distance transmission of the wind power. But the transportability of the power transmission line was impacted seriously by the frequent and large-amplitude fluctuations of the reactive power and voltage, and the bus voltage is more difficult to control. The 750kV controllable shunt reactor (CSR) which has been operated in Dunhuang substation of Gansu in 2011 provides a very efficient technological means of solving these problems. The super grid of Hexi of Gansu paralleled with the CSR is modelled in this paper. The action situation of the CSR and the influence to the system reactive power and voltage are studied, when the capacity of integrated wind power changes. The integrated capacity was measured at Dunhuang substation, the actual result of the CSR to promote the integration of the large scale wind power is revealed qualitatively and quantitatively.
机译:到2010年底,甘肃敦煌至武胜的750kV双回输电项目已投入运行,旨在促进大规模风电的整合,解决集约化开发和长期化带来的技术和实际问题。风力的远距离传输。但是,由于无功功率和电压的频繁且大幅度的波动,严重影响了输电线路的可运输性,并且母线电压更加难以控制。 750kV可控并联电抗器(CSR)于2011年在甘肃敦煌变电站投入运行,为解决这些问题提供了非常有效的技术手段。本文对甘肃河西与CSR平行的超级网格进行了建模。研究了当风电综合容量发生变化时,企业社会责任的运行情况以及对系统无功功率和电压的影响。通过对敦煌变电站的综合容量测量,定量和定量地揭示了企业社会责任促进大规模风电整合的实际结果。

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