Two kinds of compact electromagnetic band gap (EBG) structures are designed. A two layer compact EBG structure configured with cross spiral shape line inductors and interdigital capacitors is first presented. Becaus...Two kinds of compact electromagnetic band gap (EBG) structures are designed. A two layer compact EBG structure configured with cross spiral shape line inductors and interdigital capacitors is first presented. Because of its significantly enlarged equivalent inductor and capacitance, the period of the lattice is approximately 4.5% of the free space wavelength. By insetting several narrow slits in the ground plane, the bandwidth of the main bandgap is enhanced by nearly 19%. Further effort has been made for designing a three layer compact EBG structure. Simulation results show that its period is reduced by about 26% compared to that of proposed two layer EBG structure, and the bandwidth of the main bandgap is about 3 times as that of the proposed two layer EBG structure. The detailed designs including a two layer compact 3×7 EBG array with and without defect ground plane and the three layer EBG array are given and simulation results are presented.展开更多
提出了一种双层电磁带隙(Electromagnetic Band Gap,EBG)结构,构建其电感电容(Inductance Capacitance,LC)等效电路并推算出双层EBG的谐振表达式,通过仿真软件对双层EBG结构上下两层的参数进行调节,分析各参数对电磁特性的影响规律,结...提出了一种双层电磁带隙(Electromagnetic Band Gap,EBG)结构,构建其电感电容(Inductance Capacitance,LC)等效电路并推算出双层EBG的谐振表达式,通过仿真软件对双层EBG结构上下两层的参数进行调节,分析各参数对电磁特性的影响规律,结果表明双层EBG可以产生两个零位相频率点,下层结构对应的零位相频率主要与下层的介质厚度及贴片大小有关,几乎不受上层的影响,而上层结构的谐振频率不仅与其自身参数有关也要考虑下层对其的影响,仿真结果与理论分析一致.该结构为EBG的具体设计和应用提供了指导依据.展开更多
基金supported by the National Natural Science Foundation of China under Grant No. 60588502
文摘Two kinds of compact electromagnetic band gap (EBG) structures are designed. A two layer compact EBG structure configured with cross spiral shape line inductors and interdigital capacitors is first presented. Because of its significantly enlarged equivalent inductor and capacitance, the period of the lattice is approximately 4.5% of the free space wavelength. By insetting several narrow slits in the ground plane, the bandwidth of the main bandgap is enhanced by nearly 19%. Further effort has been made for designing a three layer compact EBG structure. Simulation results show that its period is reduced by about 26% compared to that of proposed two layer EBG structure, and the bandwidth of the main bandgap is about 3 times as that of the proposed two layer EBG structure. The detailed designs including a two layer compact 3×7 EBG array with and without defect ground plane and the three layer EBG array are given and simulation results are presented.
文摘提出了一种双层电磁带隙(Electromagnetic Band Gap,EBG)结构,构建其电感电容(Inductance Capacitance,LC)等效电路并推算出双层EBG的谐振表达式,通过仿真软件对双层EBG结构上下两层的参数进行调节,分析各参数对电磁特性的影响规律,结果表明双层EBG可以产生两个零位相频率点,下层结构对应的零位相频率主要与下层的介质厚度及贴片大小有关,几乎不受上层的影响,而上层结构的谐振频率不仅与其自身参数有关也要考虑下层对其的影响,仿真结果与理论分析一致.该结构为EBG的具体设计和应用提供了指导依据.