基于虚拟线路补偿的主动配电网混合仿真接口实现方法
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TM743

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国家重点研发计划资助项目(2017YFB0903005)


Implementation method of hybrid simulation interface for active distribution network based on virtual line compensation
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National Key R&D Program Project

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    摘要:

    数字物理混合仿真是未来主动配电网仿真分析的有效手段,而接口算法是确保其系统稳定性和精确性的关键。针对现有接口算法无法适用于主动配电网混合仿真的问题,文中提出一种基于虚拟线路补偿的改进功率接口算法。首先,在分析理想变压器模型(ITM)法结构与稳定条件的基础上,提出在数字侧与物理侧间增设一条虚拟线路。然后,基于线路上虚拟电流对系统进行稳定性补偿,并给出了线路阻抗的取值范围;同时,针对接口固有延迟及稳定性补偿引入的误差,提出根据虚拟线路上流过的虚拟功率对接口两侧的相位差进行补偿,以保证精确性。最后,通过仿真和实验将文中所提方法与ITM法、阻尼阻抗法及虚拟阻抗法相比较,验证了文中方法在提升主动配电网混合仿真系统稳定性及精度上的有效性和优越性。

    Abstract:

    Digital physical hybrid simulation is an effective means of active distribution network simulation and analysis,and the interface algorithm is the key to ensuring the stability and accuracy of the system. Aiming at the problem that the existing interface algorithm cannot be applied to the hybrid simulation of active distribution network,an improved power interface algorithm based on virtual line compensation is proposed. Firstly,based on the analysis of the structure and stability conditions of the ideal transformer model (ITM) method,it is proposed to add a virtual line between the digital side and the physical side. Then,the stability of the system is compensated based on the virtual current on the line,and a range of values for the line impedance is given. At the same time,for the errors introduced by the inherent delay and stability compensation of the interface,it is proposed to compensate the phase difference between the two sides of the interface according to the virtual power flowing on the virtual line to ensure the accuracy. Finally,the proposed method is compared with the ITM method,damping impedance method and virtual impedance method by simulation and experiment. The results show that the proposed method is effective and superior in improving the stability and accuracy of the hybrid simulation system of active distribution network.

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鄂涛,尹忠东,王群飞.基于虚拟线路补偿的主动配电网混合仿真接口实现方法[J].电力工程技术,2022,41(3):133-142

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历史
  • 收稿日期:2021-12-27
  • 最后修改日期:2022-03-06
  • 录用日期:2021-09-06
  • 在线发布日期: 2022-05-24
  • 出版日期: 2022-05-28
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