HFSS仿真入门学习2 -- T型波导的内场分析
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1. 设置求解类型,"HFSS"-“Solution Type”,选择模型驱动。
![](https://img.haomeiwen.com/i12911162/a5b61eee7faf44fe.png)
2. 设置模型长度单位,选择上方菜单栏“Models”-“Units”,根据需要选择长度单位,选择“in”,inch。
![](https://img.haomeiwen.com/i12911162/b0808c73fc0c34ea.png)
3. 设置模型编辑参数“Tools”-“Option”-“General Options”-“3D Models”-“Drawing”,点击勾选“Edit properties of new primitives”, 使每次新建模型之后都弹出模型参数对话框。
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5. 设置复制模型的同时,复制模型端口及边界设置。“Tools”-“Option”-“General Options”-“HFSS”-“Boundary Assignment”,勾选“duplicate boundaries/mesh operations with geometry”。
![](https://img.haomeiwen.com/i12911162/9d45e6bd7856b89f.png)
6. 新建长方体模型,点击菜单栏长方体图标,在右下角的坐标系里输入长方体原点坐标0,-0.45,0,回车
![](https://img.haomeiwen.com/i12911162/56cc2d58ebb683f6.png)
7. 设置长方体的长宽高,2,0.9,0.4,回车,设置透明度为0.4
![](https://img.haomeiwen.com/i12911162/8596c81f1908eb85.png)
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8. 设置端口激励,选中模型,鼠标右键“selection mode”-“face”,点击长方体X轴的这面作为激励源输入;再鼠标右键“assign excitation”-“wave port”
![](https://img.haomeiwen.com/i12911162/00cb879b904f3880.png)
波导类模式数,只选1不变;设置波端口的积分线,选择“new line”
![](https://img.haomeiwen.com/i12911162/c8c8a2c228dce8cf.png)
鼠标移至长方体X轴底部中点,点击,再往上移至上部中点,点击下一步,完成。
![](https://img.haomeiwen.com/i12911162/d60f5d6d8c45bac8.png)
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点击左侧工程树的激励源选项,可以在3D图中看到波端口
![](https://img.haomeiwen.com/i12911162/f384b585c1a83c2e.png)
9. 复制模型,右键“selection mode”-“objects”,选中模型;菜单栏左上角“Edit”-“Duplicate”-“Around Axis”;在弹出的对话框,选中“Z”,“90”,“2”,沿Z轴逆时针90度复制1个模型,复制体和被复制体加起来总个数为2,点击OK。再以相同的方式顺时针“-90”复制一个模型。
![](https://img.haomeiwen.com/i12911162/37f548c6bee82037.png)
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10. 合并3个模型,按ctrl选中3个模型,然后“models”-“boolean”-“unite”,或者直接点击unite图标合并
![](https://img.haomeiwen.com/i12911162/d16b64623a0209a1.png)
11. 创建一个小长方体模型,在属性窗口里输入小长方体-0.45in ,offset-0.05in ,0in;在定义offset变量的窗口,选length,in,0
![](https://img.haomeiwen.com/i12911162/ef14462500d17ef0.png)
![](https://img.haomeiwen.com/i12911162/98bc16d3b45283e8.png)
12. 使用布尔运算生成完整的T行波导模型,“models”-“boolean”-“subtract”,“blank parts”为大模型,“tool parts”为小模型。
![](https://img.haomeiwen.com/i12911162/0e1f480519c007fb.png)
![](https://img.haomeiwen.com/i12911162/407e7395b8467da5.png)
13. 设置分析类型,选“advance”,求解频率设置为10G,点击OK;再在analysis先右键“add frequency sweep”,设置为8~10G,200个点。
![](https://img.haomeiwen.com/i12911162/4f20cfab24e5e03c.png)
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14. 设置结束,检查设计是否有错,“simulation”-“validate”,都是绿色,即pass,点击旁边的“analyze all”开始仿真分析,当左下角出现“normal completion。。。”的提示后表示仿真结束
![](https://img.haomeiwen.com/i12911162/a6d3bb4fa151e20c.png)
15. 工程菜单,“results”里面选中rectangular plot
![](https://img.haomeiwen.com/i12911162/7a3552cc3a560b78.png)
16. 查看S参数结果,按住ctrl选中S11/S21/S31,点击new report,可以看出从2口3口出去的能量约为-3.1dB,反射回1口能量为-14dB
![](https://img.haomeiwen.com/i12911162/3d3b5cadd819fc1f.png)
![](https://img.haomeiwen.com/i12911162/7723d75875a40c03.png)
17. 查看T型波导的电场分布结果,选中模型的上表面,场分布“port field display”-plot fields-E-Mag_E,弹出的窗口默认就好,我们只随便看看。以及动态演示电场分布,在“Field Overlays”-E_Field-Mag_E,右键animate。
![](https://img.haomeiwen.com/i12911162/10fc30192ef2970a.png)
![](https://img.haomeiwen.com/i12911162/00c81ab58bba3083.png)