电磁带隙,EBG
1)EBG电磁带隙
1.A Novel Microstrip Antenna with Sandwich EBG Structure;一种新型夹层电磁带隙结构微带天线
2.Electromagnetic Transmission Characteristics of a 2-D Metal EBG Structure;一种二维金属电磁带隙结构的电磁传输特性
3.Assistant design of aperture coupled patch antenna using EBG materials;用电磁带隙材料设计口径耦合微带天线
英文短句/例句

1.A Novel Compact Wide Stopband Electromagnetic Bandgap Structure一种新颖的小型宽阻带电磁带隙结构
2.A Novel Compact Wideband Planar Electromagnetic Band-Gap Structure一种新型紧凑宽带平面电磁带隙结构
3.An Analytical Investigation for the Electromagnetic Properties of Periodic Structures with Electromagnetic Band-Gap;电磁带隙周期结构的电磁特性解析分析
4.Computer Simulation of Microstrip Line Filters and Electromagnetic Band Gap Structures;微带线滤波电路和电磁带隙结构的计算机仿真
5.Study on Application of Electromagnetic Bandgap and Defected Ground Structure for Microstrip Line;电磁带隙和缺陷地结构在微带线中的应用研究
6.A Novel Compact Ultra-Wide Stopband Electromagnetic Bandgap Structure一种新颖的小型超宽阻带电磁带隙结构
7.Assistant design of patch antenna using fork-like electromagnetic band-gap structure一种基于叉型电磁带隙结构微带天线设计
8.Influence of dielectric substrates on surface wave bandgap of uniplanar electromagnetic band-gap structure支撑介质对平面型电磁带隙结构带隙特性的影响
9.A Design of Power Bus Structures in PCBs Using EBG Structure基于电磁带隙结构的PCB电源接地层设计
10.Applications of EBG structures in power/ground plane noise suppression电磁带隙结构在抑制电源层上噪声的应用
11.The Application of the Novel Dual-band Electromagnetic Bandgap Structure on Dual-band Microstrip Antenna新型双带电磁带隙结构在双带微带天线上的应用
12.A Study on 1-D and 2-D Electromagnetic Transmission Characteristic of EBG Structure;一维和二维电磁带隙结构滤波特性的研究
13.The Study of Electromanetic Band-Gap Materials and It s Using in Microwave Filters;电磁带隙材料及其在微波滤波器中的应用研究
14.Frequency characteristics of electromagnetic bandgap structure with bow-tie unit一种蝶形单元的电磁带隙结构的频率特性
15.A Design of Power Bus Structures in PCBs Using EBG Structure and Magnetic Materials基于电磁带隙结构和磁性材料的PCB电源接地层设计
16.EMI Reduction from Power Bus Structures in PCBs Using EBG Structure电磁带隙结构的应用——PCB中电源接地层构造的EMI低减
17.Study on the Properties of Band Gaps of Surface Wave in Magnetoelectroelastic Acoustic Band-Gap Materials磁电弹性声带隙材料表面波带隙特性研究
18.Study on EM Properties of Photonic Crystal and Design of Large Band-gap Structure;光子晶体电磁特性分析与大带隙结构设计
相关短句/例句

electromagnetic band gap电磁带隙
1.Analysis of dispersion properties in metal electromagnetic band gap waveguide;金属电磁带隙波导色散特性分析
2.Analysis of electromagnetic band gap waveguide;金属电磁带隙波导特性分析
3.The dispersion relation of the Bragg stack is obtained and the feature of electromagnetic band gap of Bragg stack is discussed.基于Maxwell方程和周期结构的Bloch定理,求解Bragg堆中的电磁场边值问题,得到Bragg堆的色散关系,同时讨论了Bragg堆的电磁带隙特征。
3)electromagnetic band-gap电磁带隙
4)electromagnetic bandgap电磁带隙
1.Frequency characteristics of electromagnetic bandgap structure with bow-tie unit一种蝶形单元的电磁带隙结构的频率特性
2.Our recent work and results obtained in the fields about electromagnetic bandgap(EBG)structure,multi(single) antenna systems,and the channel properties of multi(single)antenna systems are introduced.本文介绍了我们近年来在电磁带隙结构、多(单)天线系统、多(单)天线信道特性方面的研究工作和主要研究结果。
5)Electromagnetic band gap(EBG)电磁带隙
1.In this paper,the electromagnetic band gap(EBG) structure is modeled by using the artificial neural network(ANN),and the ANN is trained with the converse method.文章采用人工神经网络对电磁带隙结构进行建模,并结合逆向方法训练网络;神经网络用于电磁带隙结构的设计,具有缩短设计时间、降低设计成本的优点;通过文中实例可以看出,人工神经网络设计的结果与数值仿真的结果吻合良好,显示出该方法的有效性。
2.Focusing on the problem that the electromagnetic band gap(EBG) structure of conventional microwave photonic crystals is not compact enough,a novel uni-planar EBG(UC-EBG) structure is presented based on the physical mechanism and equivalent circuit model of EBG structures.为了提高微波光子晶体结构尺寸的紧凑性,根据其局域谐振原理和等效电路分析模型,对已有的电磁带隙(EBG)结构进行了改进,得到了一种新型EBG结构。
6)EBG structure电磁带隙结构
1.Meanwhile it proves that the design of the same resonant frequency can be attained under such a condition that the CEBG structure cell size is only about 40%~50% of conventional structure.提出一种带有短路销钉的紧凑型电磁带隙结构微带天线,并与相同尺寸的普通短路销钉微带天线作比较。
2.The characteristic of the PCB transmission lines is analyzed with a method of direct time-domain finite difference,and crosstalk suppressed with EBG structure between PCB transmission lines is validated.利用时域有限差分法(FDTD)分析了PCB传输线的串扰问题,并对一种新的基于电磁带隙结构(EBG)的抑制措施进行了验证,并证明了其有效性。
3.Meanwhile it also proves that to design the same resonant frequency, the CEBG structure cell size is only about 50?60% of conventional structure, and.该文提出一种带有紧凑型电磁带隙结构的短路微带天线,并与相同尺寸的普通短路微带天线作比较。
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