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可调谐矩形环DGS的滤波特性研究 被引量:1

Study on filter properties of tunable rectangular rings Defected Ground Structure
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摘要 提出了一种新颖的可调谐矩形环缺陷接地结构(DGS),可以用来实现微波滤波器。对矩形环DGS进行了精确的时域有限差分法(FDTD)数值分析,研究了其几何尺寸变化对阻带特性的影响。将FDTD计算结果与有关文献的测量结果进行了比较,一致性很好,从而验证了FDTD程序的有效性和计算的正确性。在微带平面添加短截线,研究了短截线的尺寸变化对阻带特性的影响。通过研究可知,可以通过改变矩形环DGS的几何尺寸去调节该结构的截止频率,也可以通过调节短截线的尺寸来改变该结构的阻带特性。这种关系能为可调谐矩形环DGS的分析和设计提供有力的指导。 A novel tunable rectangular rings DGS is proposed,which can be used to design microwave filter.The precise transmission coefficient of tunable rectangular rings DGS is obtained through FDTD analysis.The influences of lattice dimensions on the characteristic of frequency are studied.The results of the FDTD simulation show good agreements with the results of measurement in the references.The influences of straight microstrip line on the characteristic of frequency are also studied.A method about controlling the cut-off frequency by altering the dimensions of straight microstrip line or the lattice dimensions is presented and discussed.The relation given in this paper will provide powerful tool for the analysis and design of microwave filter using tunable rectangular rings DGS.
出处 《计算机工程与应用》 CSCD 北大核心 2011年第25期143-145,共3页 Computer Engineering and Applications
基金 国家自然科学基金(No.60777014)~~
关键词 缺陷接地结构 微波滤波器 时域有限差分法 截止频率 defected ground structure microwave filter Finite Difference Time Domain(FDTD) cut-off frequency
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参考文献11

  • 1Chul-Soo K.A novel 1-D periodic defected ground structure for planar circuits[J].IEEE Microwave and Guided Wave Letters, 2000,10(4) : 131-133.
  • 2Jun-Seok P, Jun-Sik Y, Ahn D.A design of the novel cou- pled-line bandpass filter using defected ground structure with wide stopband performance[J].IEEE Trans on MTT, 2002,50 (9) : 2037-2043.
  • 3Guan Xuehui, Li Guohui, Ma Zhewang.Optimized design of a low-pass filter using defected ground structure[C]//Proceedings of APMC, 2005 :4-7.
  • 4Yang Jinping, Wu Wen.Compact elliptic-function low-pass filter using defected ground structure[J].IEEE Microwave and Wire- less Components Letters,2008,18(9) :578-580.
  • 5Chen Hanjan.A novel cross-shape DGS applied to design ul- tra-wide stopband low-pass filters[J].IEEE Microwave and Wire- less Components Letters,2006,16(5) :252-254.
  • 6Ting Sio-Weng.Miniaturized microstrip low-pass filter with wide stopband using double equilateral U-shaped defected ground structure[J].IEEE Microwave and Wireless Components Letters, 2006,16(5) :240-242.
  • 7Boutejdar A.A compact microstrip multi-layer low-pass filter us- ing triangle slots etched in the ground plane[C]//Proceedings of the 36th European Microwave Conference, 2006:271-274.
  • 8Mrinal K M, Sanyal S.A novel defected ground structure for planar circuits[J].IEEE Microwave and Wireless Components Letters,2006, 16(2) :93-95.
  • 9许少华,梁久祯,何新贵.模糊神经网络学习样本的选取与网络扩展能力研究[J].计算机科学,2001,28(6):94-96. 被引量:22
  • 10Ahn D,Jun-Seok P,Chul-Soo K,et al.A design of the low-pass filter using the novel microstrip defected ground structure[J]. IEEE Transactions on Microwave Theory and Techniques, 2001,49: 86-92.

二级参考文献11

共引文献22

同被引文献11

  • 1Batmanov A,Boutejdar A,Omar A,et al.Design of compact coplanar bandstop filter composed on open-loop-ring resonator and Defected Ground Structure(DGS)[J].IEEE Trans on Microwave and Optical Tech Letters,2010,52(2):478-483.
  • 2Hyun S Y, Kirn S Y.3-D thin-wire FDTD approach for resistively loaded cylindrical antennas fed by coaxial lines[J].IEEE Trans on Antennas Propagat, 2010,58 (12) : 4095-4099.
  • 3Ramadan O.On the accuracy of three different six stages SS-FDTD methods for modeling narrow-band electromagnetic applications[J].IEEE Trans on Antennas Propagat, 2010,58(9) : 3078-3080.
  • 4Yang L X, Xia Y T.Study of bandgap characteristics of 2D magnetoplasma photonic crystal by using M-FDTD method[J]. IEEE Trans on Microwave and Optical Tech Letters, 2011,53 (8) : 1778-1784.
  • 5Tan E L.Acceleration of LOD-FDTD method using fundamental scheme on graphics processor units[J].IEEE Microwave and Wireless Components Letters,2010,20(12):648-650.
  • 6Ahmed I,Chua E K,Li E ENumerical dispersion analysis of the unconditionally stable three-dimensional LOD-FDTD method[J]. IEEE Trans on Antennas Propagat,2010,58(12):3983-3989.
  • 7Singh G, Tan E L, Chen Z N.A split-step FDTD method for 3-D Maxwell's equations in general anisotropic media[J].IEEE Trans on Antennas Propagat,2010,58( 11 ) :3647-3657.
  • 8Yang B,Shao X,Goldsman N,et al.Investigation of the on-chip MISM interconnects with the alternating-direction-implicit finite- difference time-domain method[J].IEEE Trans on Microwave and Optical Tech Letters,2011,53(7): 1582-1585.
  • 9Fu P, Chen R S.Alternating-direction-explicit scheme for the 2D finite-difference time-domain method for TEz waves[J]:IEEE Trans on Microwave and Optical Tech Letters,2011,53(11): 2689-2694.
  • 10Yang Y, Chen R S, Wang D X, et al.Unconditionally stable Crank-Nicolson finite-difference time-domain method for simulation of 3-D microwave circuits[J].IEEE Trans on Antennas Propagat, 2007,1 (4) : 937-942.

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