Static Variable

14,000,000 Leading Edge Experts on the ideXlab platform

Scan Science and Technology

Contact Leading Edge Experts & Companies

Scan Science and Technology

Contact Leading Edge Experts & Companies

The Experts below are selected from a list of 40386 Experts worldwide ranked by ideXlab platform

Lu Yulin - One of the best experts on this subject based on the ideXlab platform.

  • rtds simulation system of Static Variable frequency system
    2014
    Co-Authors: Yan Wei, Zhang Yawu, Yuan Jiangwei, Wu Weidong, Wu Long, Lu Yulin
    Abstract:

    The invention discloses an RTDS simulation system of a Static Variable frequency system. The RTDS simulation system comprises a real-time digital simulator RTDS, signal interface equipment and Static Variable frequency control protection equipment, wherein the real-time digital simulator RTDS is connected with the signal interface equipment through an optical fiber, and the signal interface equipment is connected with the cable of the Static Variable frequency control protection equipment. The RTDS simulation system of the Static Variable frequency system can check the Static Variable frequency system capacity, main loop topology, unit start-up time and the like, test the function of Static Variable frequency system control and protection equipment and test control parameters; when the system topology is changed or the primary system parameters are changed, the experiment can be performed after correcting a simulation model.

Du Pen - One of the best experts on this subject based on the ideXlab platform.

  • Dynamic Update of State Space Equation Coefficient Matrix in Brushless Direct Current Motor Simulation
    2013
    Co-Authors: Du Pen
    Abstract:

    In control system simulation of brushless direct current motor,to solve state equations of the brushless direct current motor is a key issue.In Matlab/Simulink environment,using C language system functions to build simulation module can be flexible and can achieve fast simulation of complex system modeling.By putting the coefficient matrix in a Static Variable storage area,the coefficient matrix of the equation of state can be modified directly and quickly.Meanwhile,during the output stage in each simulation step,modification of coefficient matrix can achieve the purpose of dynamically updating the matrix.The simulation results show that the proposed method can achieve fast simulation of brushless direct current motor control system,and can be easily used to validate the control algorithms and strategies of brushless direct current motor.

Yan Wei - One of the best experts on this subject based on the ideXlab platform.

  • rtds simulation system of Static Variable frequency system
    2014
    Co-Authors: Yan Wei, Zhang Yawu, Yuan Jiangwei, Wu Weidong, Wu Long, Lu Yulin
    Abstract:

    The invention discloses an RTDS simulation system of a Static Variable frequency system. The RTDS simulation system comprises a real-time digital simulator RTDS, signal interface equipment and Static Variable frequency control protection equipment, wherein the real-time digital simulator RTDS is connected with the signal interface equipment through an optical fiber, and the signal interface equipment is connected with the cable of the Static Variable frequency control protection equipment. The RTDS simulation system of the Static Variable frequency system can check the Static Variable frequency system capacity, main loop topology, unit start-up time and the like, test the function of Static Variable frequency system control and protection equipment and test control parameters; when the system topology is changed or the primary system parameters are changed, the experiment can be performed after correcting a simulation model.

Zhang Yawu - One of the best experts on this subject based on the ideXlab platform.

  • rtds simulation system of Static Variable frequency system
    2014
    Co-Authors: Yan Wei, Zhang Yawu, Yuan Jiangwei, Wu Weidong, Wu Long, Lu Yulin
    Abstract:

    The invention discloses an RTDS simulation system of a Static Variable frequency system. The RTDS simulation system comprises a real-time digital simulator RTDS, signal interface equipment and Static Variable frequency control protection equipment, wherein the real-time digital simulator RTDS is connected with the signal interface equipment through an optical fiber, and the signal interface equipment is connected with the cable of the Static Variable frequency control protection equipment. The RTDS simulation system of the Static Variable frequency system can check the Static Variable frequency system capacity, main loop topology, unit start-up time and the like, test the function of Static Variable frequency system control and protection equipment and test control parameters; when the system topology is changed or the primary system parameters are changed, the experiment can be performed after correcting a simulation model.

Wu Weidong - One of the best experts on this subject based on the ideXlab platform.

  • rtds simulation system of Static Variable frequency system
    2014
    Co-Authors: Yan Wei, Zhang Yawu, Yuan Jiangwei, Wu Weidong, Wu Long, Lu Yulin
    Abstract:

    The invention discloses an RTDS simulation system of a Static Variable frequency system. The RTDS simulation system comprises a real-time digital simulator RTDS, signal interface equipment and Static Variable frequency control protection equipment, wherein the real-time digital simulator RTDS is connected with the signal interface equipment through an optical fiber, and the signal interface equipment is connected with the cable of the Static Variable frequency control protection equipment. The RTDS simulation system of the Static Variable frequency system can check the Static Variable frequency system capacity, main loop topology, unit start-up time and the like, test the function of Static Variable frequency system control and protection equipment and test control parameters; when the system topology is changed or the primary system parameters are changed, the experiment can be performed after correcting a simulation model.