基于虚拟无功功率方向的有源配电网保护方案

Active Distribution Network Protection Scheme Based on Virtual Reactive Power Direction

  • 摘要: 新能源多以分布式电源的形式接入配电网,对配电网的故障特征造成了影响,利用本地信息的传统三段式电流保护可靠性难以保证。同时,基于通信系统的纵联保护动作性能受不可测分支影响严重。提出了基于虚拟无功功率方向的有源配电网保护方案,首先定义了虚拟无功功率的概念,研究了故障发生时IIDG的虚拟无功功率输出特征;其次进一步分析了含不可测分支的有源配电网各支路的故障特性;然后利用5G通信技术和多代理技术构建配电网保护架构,在此架构上提出了基于虚拟无功功率方向的保护综合判据;最后在PSCAD/EMTDC平台进行仿真验证,说明了保护方案的有效性。

     

    Abstract: As renewable energy is connected to the distribution network in the form of distributed generator (DG) in different locations and in different grid-connected ways, the fault characteristics of active distribution networks have undergone fundamental changes. The operational performance of the current longitudinal differential protection is affected by unmeasured branches, and the limited fiber deployment rate in the distribution network hinders the effective application of the longitudinal protection. The virtual reactive power is defined in the positive sequence fault component network, and the output characteristics of the virtual reactive power after the fault of the inverter distributed power supply are investigated. In addition, the branches of the active distribution network with unmeasurable ones are further analyzed after the fault occurs. Based on the fault characteristics of the power distribution network, the 5G communication technology and multi-agent technology are employed to build a distribution network protection architecture. A virtual reactive power directional protection scheme suitable for normal and abnormal communication conditions is proposed on this architecture. Finally, the simulation and verification are carried out through PSCAD to ensure the effectiveness and reliability of protection schemes.

     

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