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The influence of high cable penetration in distribution networks on earth fault currents and the operation of relay protection.

机译:配电网络中电缆的高穿透力对接地故障电流和继电保护操作的影响。

摘要

Recent Storms in Nordic countries were a reason of long power outages in huge territories. After these disasters distribution networks' operators faced with a problem how to provide adequate quality of supply in such situation. The decision of utilization cable lines rather than overhead lines were made, which brings new features to distribution networks. The main idea of this work is a complex analysis of medium voltage distribution networks with long cable lines. High value of cable’s specific capacitance and length of lines determine such problems as: high values of earth fault currents, excessive amount of reactive power flow from distribution to transmission network, possibility of a high voltage level at the receiving end of cable feeders. However the core tasks was to estimate functional ability of the earth fault protection and the possibility to utilize simplified formulas for operating setting calculations in this network.In order to provide justify solution or evaluation of mentioned above problems corresponding calculations were made and in order to analyze behavior of relay protection principles PSCAD model of the examined network have been created. Evaluation of the voltage rise in the end of a cable line have educed absence of a dangerous increase in a voltage level, while excessive value of reactive power can be a reason of final penalty according to the Finish regulations. It was proved and calculated that for this networks compensation of earth fault currents should be implemented. In PSCAD models of the electrical grid with isolated neutral, central compensation and hybrid compensation were created. For the network with hybrid compensation methodology which allows to select number and rated power of distributed arc suppression coils have been offered. Based on the obtained results from experiments it was determined that in order to guarantee selective and reliable operation of the relay protection should be utilized hybrid compensation with connection of high-ohmic resistor. Directional and admittance based relay protection were tested under these conditions and advantageous of the novel protection were revealed. However, for electrical grids with extensive cabling necessity of a complex approach to the relay protection were explained and illustrated. Thus, in order to organize reliable earth fault protection is recommended to utilize both intermittent and conventional relay protection with operational settings calculated by the use of simplified formulas.
机译:北欧国家最近发生的风暴是在大片地区长时间停电的原因。在这些灾难之后,配电网络的运营商面临着在这种情况下如何提供足够的供应质量的问题。决定使用电缆线而不是架空线,这为配电网络带来了新功能。这项工作的主要思想是对带有长电缆线路的中压配电网进行复杂的分析。电缆的比电容值高和线长决定了以下问题:接地故障电流值高,从配电网到传输网络的无功功率过大,电缆馈线的接收端可能有高电压电平。然而,核心任务是评估接地故障保护的功能能力,以及在该网络中使用简化公式进行运行设置计算的可能性。为了提供合理的解决方案或评估上述问题,进行了相应的计算并进行分析。继电保护原理的行为已创建所检查网络的PSCAD模型。评估电缆线末端的电压升高会导致电压水平没有危险的升高,而无功功率值过高可能是根据Finish规定的最终处罚原因。已经证明并计算出,对于该网络,应实现接地故障电流的补偿。在带有隔离中性线,中央补偿和混合补偿的电网PSCAD模型中,创建了模型。对于具有混合补偿方法的网络,该方法允许选择分布式消弧线圈的数量和额定功率。根据从实验中获得的结果,可以确定,为了保证继电保护的选择性和可靠运行,应采用高补偿电阻连接的混合补偿。在这些条件下测试了基于方向和导纳的继电保护,并揭示了新型保护的优势。但是,对于具有大量布线的电网,必须说明并说明采用复杂方法进行继电保护的必要性。因此,为了组织可靠的接地故障保护,建议同时使用间歇保护和常规继电保护,并使用通过简化公式计算得出的运行设置。

著录项

  • 作者

    Cheshev Vsevolod;

  • 作者单位
  • 年度 2015
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  • 原文格式 PDF
  • 正文语种 en
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