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基于谱聚类算法的智能站改扩建测试边界标定方法

Method for determining test boundary of smart substation retrofit and expansion based on spectral clustering algorithm

  • 摘要: 针对智能变电站改扩建中配置变更识别困难、关联设备界定模糊、测试边界不明确导致停电范围大、调试效率低的问题,提出基于哈希算法与谱聚类的测试边界确定方法。采用“双层向量化建模+子循环冗余校验(cyclic redundancy check,CRC)”算法,提取全站系统配置文件(substation configuration description,SCD)中智能电子设备(intelligent electronic device,IED)核心配置信息,计算哈希向量与子CRC校验码,实现设备增删改状态自动识别与模块级精准定位;引入谱聚类构建关联域划分模型,融合影响传导强度与拓扑特性,定义四类关联域分类标准与动态校准规则,确定最小测试边界。经220 kV智能变电站改扩建工程验证,该方法可显著缩小测试范围、降低停电影响,可为智能变电站改扩建工程安全高效实施提供技术支撑。

     

    Abstract: Aiming at the problems of difficult identifications of configuration modification, ambiguous definition of associated devices and unclear test boundaries in the retrofit and expansion of smart substations, resulting in large power-outage scope and low commissioning efficiency, this paper proposes a test boundary determination method based on the hash algorithm and spectral clustering. Firstly, the algorithm of "two-layer vectorized modeling + sub-cyclic redundancy check (sub-CRC)" is adopted to extract core configuration information of intelligent electronic devices (IEDs) from the substation configuration description (SCD) file. Hash vectors and sub-CRC check codes are calculated to realize automatic identification of device addition, deletion and modification as well as accurate module-level localization. Secondly, the spectral clustering algorithm is introduced to construct an association-domain division model. By integrating influence-transmission intensity and topological characteristics, four classification criteria for association domains and dynamic calibration rules are defined to determine the minimum test boundary. Verified by a retrofit-and-expansion project of a 220 kV smart substation, the proposed method can significantly narrow the test scope and mitigate the power-outage impacts, providing technical support for the safe and efficient implementation of retrofit and expansion projects of smart substations.

     

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