Yigang WangYun YiBin ChenHailin ChenKang LuoRun Xiong
An unconditionally stable one-step leapfrog locally one-dimensional finite-difference time-domain (LOD-FDTD) algorithm towards body of revolution (BOR) is presented. The equations of the proposed algorithm are obtained by the algebraic manipulation of those used in the conventional LOD-BOR-FDTD algorithm. The equations forz-direction electric and magnetic fields in the proposed algorithm should be treated specially. The new algorithm obtains a higher computational efficiency while preserving the properties of the conventional LOD-BOR-FDTD algorithm. Moreover, the convolutional perfectly matched layer (CPML) is introduced into the one-step leapfrog LOD-BOR-FDTD algorithm. The equation of the one-step leapfrog CPML is concise. Numerical results show that its reflection error is small. It can be concluded that the similar CPML scheme can also be easily applied to the one-step leapfrog LOD-FDTD algorithm in the Cartesian coordinate system.
Yicheng LiuLihua ShiHailin ChenJianbao WangQi LeiYantao DuanQi ZhangShangchen Fu
Xiang-Hua WangWen‐Yan YinZhizhang Chen
Chao LiChangchun LvJinping SongYuanguo ZhouZhaowen YanQiang Ren
Xiang-Hua WangWen‐Yan YinZhizhang Chen
Yigang WangBin ChenHailin ChenYun YiXinli Kong