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1.
用有限元法分析任意截面槽波导   总被引:1,自引:0,他引:1  
用有限元法分析了任意形状槽波导。在槽波导开放端口引进了吸收边界条件。对矩形槽波导、V形槽波导、圆形槽波导的分析表明,计算结果与实验值以及其它方法得到的结果有较好的吻合。  相似文献   

2.
本文用高次有限元法分析了任意形状槽波导的色散和损耗特性.该方法的有效性和可靠性由实验和其它计算结果所证实.文中对诸如矩形、三角形、抛物、椭圆和余弦等形状的槽波导进行了系统的研究.计算结果表明,不同形状槽波导具有相近的色散特性,但损耗相差很大,其中V形槽波导损耗最小,大约是矩形槽波导的一半.文中给出的曲线可供设计槽波导元件和电路时参考.  相似文献   

3.
本文用有限元法分析了矩形槽波导。对矩形波导的计算验证了我们的有限元程序是有效的。文中给出的矩形槽波导模式图有助于设计基于矩形槽波导的短毫米波和亚毫米波器件。  相似文献   

4.
本文用高次有限元法分析了任意形状槽波导的色散和损耗特性。该方法的有效性和可靠性由实验和其它计算结果所证实。文中对诸如如矩形,三角形,抛物,椭圆和余弦等形状的槽波导进行了系统的研究。计算结果表明,不同形状槽波导具有相近的色散特性,但损耗相差很大,其中V形槽波导损耗最小,大约是矩形槽波导的一半。文中给出的曲线可供设计槽波导元件和电路时参考。  相似文献   

5.
宽频带槽波导定向耦合器的分析与设计   总被引:2,自引:0,他引:2  
用微波网络方法讨论了宽频带槽波导定向耦合器的分析和设计问题.使用部分介质填充非对称双槽波导的横向等效网络,编制了相应求解程序.计算表明,本文设计的两种3mm波段耦合器的相对带宽都在24%以上,是常规的对称双槽波导耦合器带宽的5倍,而它们的长度却比文献中已有的设计都大为缩短.  相似文献   

6.
设计了梯形槽波导到矩形波导的过渡段;用有限元法分析了整个过渡段的截止特性,保证矩形波导到梯形槽波导的单模传输;并用槽波导做传感器测量粮食的湿度,得到微波电路参数Dmin随粮食湿度的拟合曲线。  相似文献   

7.
用阶梯近似的方法分析任意槽形加载的圆波导慢波系统中的场,采用自洽场理论,得到了任意槽形周期加载圆波导慢波系统在小信号条件下的“热”色散方程,并对结构参数对小信号增益的影响情况进行了研究。加载深度和槽口宽度在固定频率下都有一最佳值使得增益最大。  相似文献   

8.
计算了螺旋槽波导的色散特性和群速度,用“准周期边界条件”方法和谐振法模拟计算了螺旋槽波导的色散特性,两种方法的模拟结果与计算都比较一致。此外,还模拟测试了渐变与规则螺旋槽波导连接的匹配性能、螺旋槽波导高频系统的传输特性。结果表明,螺旋槽波导是非常适用于回旋行波管的高频结构。  相似文献   

9.
吴涛  孔繁敏  李康  王韶波 《中国激光》2003,30(8):705-708
用坐标变换的倾斜坐标系中的广角光束传播法对光波导进行了分析。与直角坐标系中的广角光束传播法比较 ,在处理大斜角波导时 ,本方法得到了更好的结果。将其用于Y分支波导的分析中 ,也得到了所期望的结果  相似文献   

10.
波导本征值问题的多极理论分析   总被引:3,自引:0,他引:3       下载免费PDF全文
本文利用多极理论分析波导本征值问题.给出用多极理论分析波导本征值问题的使用规则和实施方法.实例计算结果表明,用多极理论分析波导本征值问题,不仅具有较高的计算精度,而且可以很方便地应用于波导工程问题的设计与计算,多极理论是一种有效的波导本征值分析方法.  相似文献   

11.
12.
An advantage of closed groove guide over open groove guide is attended. In this paper, the several kinds of closed groove guides including the trapezoidal-, elliptic- and parabolic-groove guides as new types of millimeter wave transmission lines are presented. Their dispersion and cut-off characteristics of the dominant mode are analysed and compared with ones of the closed V-and circular- groove guides by using the equivalent network method. The obtained results have important meaning in theoretical studies and actual applications of groove waveguides.  相似文献   

13.
Loss and dispersion characteristics of groove guide are two practically important factors in the design for millimeter wave system consisting of groove guide. In this paper, a new method is presented for analyzing loss and dispersion characteristics of the groove guides with arbitrary groove cross-sections. The method is based on the combination of an equivalent active transmission line equation and the staircase approximation. Numerical results of dispersion and attenuation properties for some groove guides with different groove profiles are given. The effectiveness and practicality of the present analysis are confirmed by the data given in the literature.  相似文献   

14.
The analysis of loss characteristics for groove guide is one of the most practically important problems in millimeter wave system consisting of groove guide. In this paper, the calculation of the skin loss for the modes in the groove guide is ended to the solution of an active equivalent transmission line equation. The effectiveness and the reliability of the present method are verified by comparison between the present results and those given in the literature.  相似文献   

15.
The dispersion and loss characteristics of groove guide with arbitrary shapes are analyzed with high-order finite element method. The effectiveness and the reliablity of the method are verified by the experiments and the results obtained by other methods. Groove guides with various groove shapes, such as rectangular, triangular, parabolic, elliptic and cosine functions, are investigated systematically. The calculating results show that the dispersion of groove guide with different groove shape is almost the same, however, the loss characteristics is rather different; among them, V-shape groove guide has the lowest loss which is about half of the rectangular one. All the curves and the data given in this paper can be used in designing elements and circuits of the groove guide.  相似文献   

16.
In this paper, the dominant mode in groove guide is analyzed by finite element method. For the guide with a shallow groove, the electric field lines (abbreviated as E lines) are perpendicular to the parallel plate, which is different from the literatures, and the dominant mode distribution is irrelevant to the groove width; for the guide with a narrow but deeper groove, the E lines are parallel to the plate region, which represents the characteristics of lower attenuation, for the guide with a deeper and wider groove, a complicated E lines are obtained. These results reveal that the dominant mode distribution in groove guide is varied, which replenish our understanding of groove guide, and the results have important values in design, manufacture, and application of groove guide.  相似文献   

17.
A new millimeter wave leaky wave antenna is presented in this paper, which is a modification of the groove guide with an asymmetric conductor strip by introducing a dielectric slab into the conductor plane region of the groove guide antenna. The leakage property of the new antenna is carefully examined through calculations of an equivalent network, which is developed here with taking into account the coupling between different modes to guarantee the calculating accuracy. It has been found that the new leaky wave antenna is of larger leakage constant than that for the original groove guide antenna because of the introduction of the dielectric slab. Extensive numerical results of the leakage characteristics are given to establish useful guidelines for the design of the new type groove guide leaky wave antenna.  相似文献   

18.
An arbitrarily cross-sectional groove guide is analyzed by using the method of lines and its characteristic equations are gives for TE and TM modes. Some numerical results show that correctness of the method of lines compared with the relevant results in the references is verified, and it is convenient to solve groove guide with arbitrary shape in practical application problems. A novel cocoon-shaped groove guide is firstly presented and its transmission characteristics are analyzed and discussed. The new type of cocoon-shaped groove guide has the good performances. The obtained results are of important application values in theoretical studies and practical applications of groove guides for millimeter waves.  相似文献   

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