Patents Assigned to Guizhou Power Grid Company Limited
  • Publication number: 20230241993
    Abstract: The invention discloses a charging state analysis method of a electric vehicle based on electrical characteristic sequence analysis. The method includes following steps: step S1, obtaining voltage sampling data and current sampling data of the electric vehicle during charging; step S2, setting a time interval, so as to divide the voltage sample data and the current sampling data obtained in step S1 into multiple data sets; step S3, calculating an electrical characteristic vector of each time interval; step S4. adding the calculation results of Step S3 to a temperature sensing value T, and generate an electrical characteristic sequence of whole charging cycle; step S5, inputting the electrical characteristic sequence of the electric vehicle into a trained Time Recurrent Neural Network (TRNN) in sequence to obtain corresponding results; if the result is 1, it means normal; if the result is 0, it means abnormal.
    Type: Application
    Filed: January 19, 2021
    Publication date: August 3, 2023
    Applicant: Guizhou Power Grid Company Limited
    Inventors: Bin LIU, Zhukui TAN, Qiuyan ZHANG, Saiqiu TANG, Xia YAN, Rong CHEN, Yu SHEN, Hai ZHOU, Peng ZENG, Canhua WANG, Chenghui LIN, Mian WANG, Jipu GAO, Meimei XU, Zhaoting REN, Cheng YANG, Dunhui CHEN, Houyi ZHANG, Xinzhuo LI, Qihui FENG, Yutao XU, Li ZHANG, Bowen LI, Jianyang ZHU, Junjie ZHANG
  • Patent number: 11695781
    Abstract: The invention discloses a method for managing communication authority based on multi-energy equipment data flow using digital twin and a system thereof, comprising the following steps: generating a unique permission code; Establishing a data flow interaction channel; utilizing a broadcast detection mechanism to periodically check the data flow communication authority based on the channel and continuously remove the data flow interaction channel that is expired and illegally authorized, thus to complete the data flow communication management. The present invention has the advantages that the management is more scientific, the algorithm is clearer, more efficient and safer, and the level is well arranged; the channel resource utilization rate is improved, filling the gap in the current stage of a method for managing communication authority based on multi-energy equipment data flow using digital twin and a system thereof, and ensuring the real-time mapping between physical entities and virtual images.
    Type: Grant
    Filed: February 3, 2021
    Date of Patent: July 4, 2023
    Assignee: Guizhou Power Grid Company Limited
    Inventors: Xueyong Tang, Yankan Song, Huijiang Wan, Qinfeng Ma, Zhitong Yu, Bin Sun, Xiang Fan, Ruifeng Zhang, Qingsheng Li, He Yang, Zhen Li, Weijie Qiu, Peng Ai
  • Patent number: 11562445
    Abstract: A method for programming the energy storage device in power-gas coupling system based on reliability constraints is provided. The method includes: obtain the parameters and operation condition of each equipment of the power-gas coupling system in a year; determine the different operating states of the system. A programming model of the energy storage device based on reliability constraints is constructed based on the operating state of the system, and benders decomposition algorithm is adopted to calculate the programming model, so that the programming scheme of the energy storage device is obtained. Considering not only the economy but also the reliability of the system, which is more accurate, comprehensive and effective than the previous programming method; the present invention is of great significance to improve the reliability of the electric power system and ensure the safe and reliable operation of the electric power system.
    Type: Grant
    Filed: February 3, 2021
    Date of Patent: January 24, 2023
    Assignee: Guizhou Power Grid Company Limited
    Inventors: Xueyong Tang, Minglei Bao, Zhenming Liu, Yongyuan Luo, Qingsheng Li, Yi Ding, Bin Sun, Peng Wu, Xia Yan, Sheng Wang, Xianggang He, Ning Luo, Jindi Hu, Xiaocong Sun