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Design of microwave lowpass filter based on log periodic zigzag DGS


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[1] J.-L. Li and B.-G. Yu, “Numerical study and experimental validation of a four-way feeding network with 45 deg broadband phase shifts for antenna array applications”, Journal of Electrical Engineering, vol. 70, no. 5, pp. 400-405, 2019.10.2478/jee-2019-0072Search in Google Scholar

[2] L. Xia, J.-L. Li, Z. Ji, and S.-S. Gao, “An in-line coaxial-to-circular waveguide transition at X band”, Journal of Electrical Engineering, vol. 71, no. 1, pp. 55-59, 2020.10.2478/jee-2020-0008Search in Google Scholar

[3] C.-G. Sun, J.-L. Li, and B.-A. Twumasi, “Multi-way differential power divider with microstrip output interfaces”, Journal of Electrical Engineering, vol. 71, no. 4, pp. 274-280, 2020.10.2478/jee-2020-0037Search in Google Scholar

[4] J.-L. Li, J. X. Chen, Q. Xue, J.-P. Wang, W. Shao, and L.-J. Xue, “Compact microstrip lowpass filter based on defected ground structure and compensated microstrip line”, IEEE MTT-S International Microwave Symposium Digest, vol. 71, no. 4, pp. 472-14831486.Search in Google Scholar

[5] M.-K. Mandal, P. Mondal, S. Sanyal, and A. Chakrabarty, “Low insertion-loss, sharp-rejection and compact microstrip low-pass filters”, IEEE Microwave and Wireless Component Letters, vol. 16, no. 11, pp. 600-602, 2006.10.1109/LMWC.2006.884777Search in Google Scholar

[6] B.-A Twumasi and J.-L. Li, “An equivalent circuit model of a rectangular bracket shaped DGS and its microwave filter applications”, Journal of Electrical Engineering, vol. 70, no. 1, pp. 32-38, 2019.10.2478/jee-2019-0004Search in Google Scholar

[7] R.-B. Chen and X.-O. Ou, “A hairpin DGS resonator for application to microstrip lowpass filters”, Journal of Electrical Engineering, vol. 71, no. 2, pp. 110-115, 2020.10.2478/jee-2020-0016Search in Google Scholar

[8] J. Gong, “A rectangular slot Yagi DGS microstrip filter with sharp rollo and wide suppression band”, Journal of Electrical Engineering, vol. 71, no. 3, pp. 217-221, 2020.10.2478/jee-2020-0029Search in Google Scholar

[9] Z.-L. Wen, Y.-Y. Han, X.-Y. Sun, and R. Tao, “Design of miniaturized low-pass filter with improved Koch fractal DGS”, Proceedings of IEEE International Symposium Electromagnetic Compatibility, pp. 1-4, 2017.10.1109/EMC-B.2017.8260351Search in Google Scholar

[10] J.-L. Li, S.-W. Qu, and Q. Xue, “Compact microstrip lowpass filter with sharp roll-o and wide stop-band”, Electronics Letters, vol. 45, no. 2, pp. 110-111, 2009.10.1049/el:20093246Search in Google Scholar

[11] D.-E. Isbell, “Log periodic dipole arrays”, IRE Transactions on Antennas and Propagation, vol. 8, no. 3, pp. 260-267, 1960.10.1109/TAP.1960.1144848Search in Google Scholar

[12] N. Barbano, “Log periodic Yagi-Uda array”, IEEE Transactions on Antennas and Propagation, vol. 14, no. 2, pp. 235-238, 1966.10.1109/TAP.1966.1138641Search in Google Scholar

[13] D. Varon and R. Kieburtz, “Theoretical analysis of a log-periodic structure”, Proceedings of IEEE International Symposium on Antennas and Propagation, pp. 58-61, 1964.Search in Google Scholar

[14] C.-C. Bantin and K.-G. Balmain, “Study of compressed log-periodic dipole antennas”, IEEE Transactions on Antennas and Propagation, vol. 18, no. 2, pp. 195-203, 1970.10.1109/TAP.1970.1139650Search in Google Scholar

[15] R. Lehmensiek and D.-I. De Villiers, “Optimization of log-periodic dipole array antennas for wideband omnidirectional radiation”, IEEE Transactions on Antennas and Propagation, vol. 63, no. 8, pp. 3714-3718, 2015.Search in Google Scholar

[16] P. Zhang and M. Li, “A novel sharp roll-o microstrip lowpass filter with improved stopband and compact size using dual-plane structure”, Microwave and Optical Technology Letters, vol. 58, no. 5, pp. 1085-1088, 2016.Search in Google Scholar

[17] A. Boutejdar, A.-A. Ibrahim, and R.-M. Shubair, “A novel high-performance DMS/DGS low-pass filter for radar applications”, Proceedings on IEEE International Symposium on Antennas Propagation & USNC/URSI National Radio Science Meeting, pp. 2259-60, 2017.Search in Google Scholar

[18] S. Sen, T. Moyra, and D. Sarkar, “Modelling and validation of microwave LPF using modified rectangular split ring resonators (SRR) and defected structures”, AEU-International Journal of Electronics and Communications, vol. 88, pp. 1-10, 2018.10.1016/j.aeue.2018.02.009Search in Google Scholar

[19] Y. Han, Z. Liu, C. Zhang, C. Mei, Q. Chen, and S. Yuan, “A flexible microstrip low-pass filter design using asymmetric Pi-shaped DGS”, IEEE Access, vol. 7, pp. 49999-50006, 2019.Search in Google Scholar

[20] T.-K. Rekha, P. Abdulla, P.-M. Jasmine, and A.-A. Anu, “Compact microstrip lowpass filter with high harmonics suppression using defected structures”, AEU-International Journal of Electronics and Communications, vol. 115, pp. 153032-1-10, 2020.Search in Google Scholar

[21] C. Maximo-Gutierrez, J. Hinojosa, F.-L. Martinez-Viviente, and A. Alvarez-Melcon, “Design of high-performance microstrip and coplanar low-pass filters based on electromagnetic bandgap (EBG) structures”, AEU-International Journal of Electronics and Communications, vol. 123, pp. 153311-1-7, 2020.Search in Google Scholar

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