Erzhi Wang
Shenyang University of Technology
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Publication
Featured researches published by Erzhi Wang.
IEEE Transactions on Magnetics | 2006
Xiaoming Liu; Yundong Cao; Erzhi Wang
For improving the calculation precision of the electric field, a novel combination of genetic algorithms (GA) and charge simulation method (CSM) is proposed. In which, the allocations and quantities of the optimized charges can be obtained using GA, and higher calculation precision can be achieved. The combined CSM and the hybrid conventional and optimized CSM were applied for computing the electric field of the demonstration examples. The comparison of the relative error between the conventional and optimized CSM has been obtained. The feasibility, practicability and validity of the proposed optimized CSM have been verified
IEEE Transactions on Dielectrics and Electrical Insulation | 2002
Yundong Cao; Xiaoming Liu; Erzhi Wang; Li Jin; Guang Wang
During interruption in the vacuum interrupter, the re-ignition between the contact and the shield is influenced by the shape of the contact and size of the shield. The design of the contact and the shield is an intricate optimization problem. In this paper, the Tabu search algorithm is applied to optimize the contacts of a 35 kV vacuum interrupter. The optimization design is based on electric field computation using the finite element method. By solving the inverse problem, the optimization of the contacts is achieved, and a reasonable distribution of the electric field is obtained. Based on the combinatorial optimization Tabu search algorithm, an improved universal algorithm for continuous variables global optimization is proposed.
international symposium on discharges and electrical insulation in vacuum | 2006
Chunguang Hou; Jing Sun; Yundong Cao; Xiaoming Liu; Erzhi Wang
A novel permanent magnet actuator (PMA) for mining vacuum circuit breaker (VCB) is presented in this paper. Which is monostable, has two coils and able to break the VCB when the fault of low-voltage happened. And can detect the voltage variation in main circuit at each instant. When the fault of low-voltage happened, it can automatically break without additional detection and control of apparatus. Moreover, the different states and parameters of breaking and closing courses have been numerical computed and analyzed by adopting ANSOFT software. Based on the simulation results, the prototype is manufactured and assembled in the mining VCB. The feasibility and validity of the proposed PMA have been proved by testing results
IEEE Transactions on Magnetics | 2008
Xiaoming Liu; Yundong Cao; Fuyue Wen; Erzhi Wang
Electrode contour optimization of arc quenching chamber of extra-high-voltage SF6 circuit breaker using the proposed variable interval genetic algorithm (VIGA) has been carried out to obtain not only a uniform field but also a dynamic distribution of electric field strength along different contact surface. In order to investigate the validity of VIGA quantitatively, optimization of two testing functions has been computed in detail. From comparison of the optimized solution to the analytical solution for the testing functions, the feasibility and practicability of the proposed VIGA has been verified. Moreover, in optimization, for enhancing the convergence efficiency of the optimization, the real-coded mode and improved blend-crossover strategy is proposed and applied.
international symposium on discharges and electrical insulation in vacuum | 2006
Xiaoming Liu; Tao Tang; Yundong Cao; Erzhi Wang
In this paper, the axial magnetic field of vacuum interrupter (VI) has been computed. Moreover, the static, transient magnetic field and 3D electric field have been analyzed using finite element method (FEM). The dynamic distributions of the axial magnetic field along the contact surface varying with interrupting instant and space have been simulated. Accordingly, the influence of the contact structure on the interrupting and insulation performance has been analyzed. The theoretical basis for optimizing the structure and investigating the interrupting capacity of the vacuum circuit breaker (VCB) has been provided
IEEE Transactions on Magnetics | 2006
Xiaoming Liu; Yundong Cao; Erzhi Wang
Combined electric field and flow field are numerically simulated based on the computation of the N-S equation and turbulent model, taking the influence of temperature, pressure, and the effect of gas flow on the dynamic arc into consideration. In computing, self-adaptive adjustment of the current has been considered for reflecting the variation of the dynamic arc during the whole interrupting course. Moreover, the gas flow field of high voltage SF6 circuit breakers (HVCBs) with complex flow path, supersonic nozzle, source, viscous, compressible and variable boundaries has been solved. Consequently, the interaction of dynamic arc and gas flow has been simulated. The feature of dynamic arc-gas flow interaction has been numerically analyzed, and the arc choke varying with the pressure of gas flow, velocity, and the flow flux has been simulated. The theoretical foundation for further studying the utilization of arc energy and improving interrupting performance has been established
international symposium on discharges and electrical insulation in vacuum | 2002
Xiaoming Liu; Yundong Cao; Erzhi Wang; Li Jin
In this paper, a combined method of traditional and optimized charge simulation method (CSM) based on the genetic algorithms (GA) is presented for calculating electric field. Based on the well studied and analyzed traditional CSM, the optimized charges locations and quantities have been realized using GA as the optimization method. The feasibility and practicability of the combined method are verified by calculating the electric field of a 35 kV vacuum interrupter (VI).
international symposium on discharges and electrical insulation in vacuum | 2002
Yundong Cao; Xiaoming Liu; Erzhi Wang; Zhiping Liu
A novel permanent magnetic spring actuator of a low voltage high current vacuum circuit breaker (VCB) is presented. The breaking property requirement is satisfied, the current of the control circuitry is reduced and more rationalization of production in practice is verified. Furthermore, magnetic field distributions of permanent magnetic actuators under different operational conditions are obtained.
IEEE Transactions on Magnetics | 2006
Li Li; Erzhi Wang
In this paper, the Finite Analytic concept is introduced for calculating the electric field distribution. To express the relationship between central potential and vertex potentials on a grid, the exponential function is adopted instead of the series function in conventional Finite Analytic Method (FAM). On this consideration, the finite analytic equation for electric field calculation is deduced. And aiming at accelerating the computational convergence, the improved FAM is combined with Multi-grid Method and the body fitting grids are generated at each divided subregion for generating the regular grids and for distinguishing the fine grids and coarse grids
international symposium on discharges and electrical insulation in vacuum | 2006
Yundong Cao; Shixun Liu; Xiaoming Liu; Erzhi Wang; Yuhuan Zhao
The chaotic neural network (CNN), the combination of the chaotic and the artificial neural network (ANN), is presented and applied to optimize the vacuum interrupter. Moreover, the unique dynamic characteristic of the CNN has been successfully utilized for solving the multivariable optimization. And the feasibility and the validity for the global optimization are verified by the demonstrated examples