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APPLICATION OF THE PML ABSORBING BOUNDARY CONDITION TO FD-TD SIMULATION

APPLICATION OF THE PML ABSORBING BOUNDARY CONDITION TO FD-TD SIMULATION
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摘要 The key problem of finite-difference time-domain (FD-TD) method is the skillful application of special conditions on the boundaries of the computational domain. A new technique named Perfectly Matched Layer(PML) yields a robust Absorbing Boundary Condition(ABC) independent of the angle of incidence and the frequency of outgoing waves. In this paper, the principle of the PML technique is briefly presented. Then some problems in the application and their settlements are discussed emphatically. Finally three numerical tests and a measured result are devoted to examine the accuracy and effectiveness of this approach. The key problem of finite-difference time-domain (FD-TD) method is the skillful application of special conditions on the boundaries of the computational domain. A new technique named Perfectly Matched Layer(PML) yields a robust Absorbing Boundary Condition(ABC) independent of the angle of incidence and the frequency of outgoing waves. In this paper, the principle of the PML technique is briefly presented. Then some problems in the application and their settlements are discussed emphatically. Finally three numerical tests and a measured result are devoted to examine the accuracy and effectiveness of this approach.
出处 《Journal of Electronics(China)》 1998年第2期168-173,共6页 电子科学学刊(英文版)
基金 Supported by the National Natural Science Foundation of China
关键词 FINITE-DIFFERENCE TIME-DOMAIN Absorbing BOUNDARY CONDITION Perfectly matched layer REFLECTION COEFFICIENT Finite-difference time-domain Absorbing boundary condition Perfectly matched layer Reflection coefficient
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